Dr. Xiangbao Zeng | Tough Sensors Awards | Best Researcher Award

Dr. Xiangbao Zeng | Tough Sensors Awards | Best Researcher Award

Dr. Xiangbao Zeng, Chongqing University, China

Zeng Xiangbao is a distinguished PhD candidate in Instrument Science and Technology at the College of Optoelectronic Engineering, Chongqing University, China, with a focus on ultrasonic and photoelectric sensors. Currently serving as a senior engineer at CETC Chip Technology Co., Ltd., Chongqing, he has contributed significantly to the field of sensor research and development. Over the years, Zeng has led and participated in more than 10 national research projects, including four at the national level. His innovative work spans biosensing, piezoelectric sensing, photoelectric sensing, and intelligent perception, including the development of a distributed laser gas monitoring system and an acoustic resonance ultrasonic wind sensor used in diverse industries such as environmental protection and wind energy. With more than 40 patents and 10 peer-reviewed publications, Zeng is an active collaborator on national programs and works closely with institutions like MIT to advance sensor technologies. His membership in the Acoustical Society of China and the China Instrument and Control Society further reflects his commitment to the advancement of sensor technologies.

Professional Profile:

SCOPUS

ORCID

Suitability for the Best Researcher Award: Dr. Xiangbao Zeng

Dr. Xiangbao Zeng is an exemplary candidate for the Best Researcher Award due to his outstanding contributions to sensor technology, particularly in the fields of acoustic, photoelectric, and biochemical sensors. His innovative research has resulted in significant advancements in sensor applications, evidenced by his numerous academic and industrial achievements.

Academic and Professional Background:

Zeng Xiangbao is a PhD candidate in Instrument Science and Technology at the College of Optoelectronic Engineering, Chongqing University, China 🎓. Currently, he is a Senior Engineer at CETC Chip Technology Co., Ltd, Chongqing 🇨🇳. His research focuses on ultrasonic sensors and photoelectric sensors, and he has published more than 10 peer-reviewed papers 📚.

Research & Innovations:

  • Zeng has completed and is involved in over 10 national projects and has presided over 4 national-level projects 🌍.
  • He has published 41 patents 📝 and 11 research papers in reputable journals đź“–.
  • Collaborated with MIT on research regarding disinfection factors 🔬.
  • His research includes acoustic, optical, and biochemical sensors 🌟.

Key Contributions:

  • Developed a distributed laser gas monitoring system for underground pipeline corridors 🚇.
  • Created an acoustic resonance ultrasonic wind sensor widely used in wind turbine generators and the meteorological & environmental protection industries 🌬️🌍.
  • Holds over 40 patents and continues to innovate in biosensing, piezoelectric sensing, and intelligent perception 🤖🔧.

Awards & Recognition:

Zeng’s contributions have earned him recognition within his field, and he is a leading researcher in sensor technologies that play a critical role in environmental and industrial applications 🌱⚡.

Publication top Notes:

Full-Phase Wind Speed and Direction Algorithm for Acoustic Resonance Wind Sensor

Bionic tribo-sensors with sweat and smudge-resistant as electronic skin for personal authentication

Signal Identification Method of Vibration Sensor System for Environmental Condition Monitoring

Study on Closed-Loop Solving Strategy of Piezoelectric Ultrasonic Resonant Wind Sensor

Research on performance improvement of acoustic resonance-based wind sensors by using dual closed-loop control

Study on Preparation and Properties of Sodium Potassium Niobate-Based 1-3 Piezoelectric Composites

Resonance-State Temperature Compensation Method for Ultrasonic Resonance Wind Speed and Direction Sensors

Dr. Changchao Zhang | Bionic Sensor Awards | Best Researcher Award

Dr. Changchao Zhang | Bionic Sensor Awards | Best Researcher Award

Dr. Changchao Zhang, Jilin University, China

Dr. Changchao Zhang is an accomplished researcher specializing in bionic sensors, currently affiliated with Jilin University. With a strong focus on developing sustainable and biodegradable materials for vibration sensing, Dr. Zhang addresses the growing concern of electronic waste and environmental pollution caused by traditional sensors. His innovative research includes the design of a novel vibration sensor that utilizes pencil-drawn graphite on paper, creating a conductive layer for effective electromechanical signal conversion. This groundbreaking approach allows the sensor to detect vibrations across a wide frequency range from 5 Hz to 1 kHz, with a maximum acceleration sensitivity of 10 g. Dr. Zhang’s work not only contributes to advancements in sensor technology but also promotes green electronics, making his research highly relevant across various fields, including industry, agriculture, and environmental monitoring.

Professional Profile:

SCOPUS

Summary of Suitability for Best Researcher Award: 

Dr. Changchao Zhang is an exemplary candidate for the Best Researcher Award, especially in the domain of bionic sensors. His innovative approach to developing biodegradable vibration sensors represents a significant advancement in sustainable technology, addressing critical environmental concerns related to traditional rigid and toxic sensor materials.

Education

  • Ph.D. in Electronic Engineering
    Jilin University, Changchun, China
     Master’s Degree in Material Science and Engineering
    Bachelor’s Degree in Physics

Work Experience

  • [Current Position, e.g., Associate Professor/Researcher]
    Jilin University
    Department of [Relevant Department]

    • Lead research initiatives in the development of innovative bionic sensors utilizing biodegradable materials.
    • Focus on the design and fabrication of paper-based MEMS vibration sensors for various applications.
    • Collaborate with interdisciplinary teams to advance green electronics technologies.
  • [Previous Position, e.g., Research Scientist/Engineer]
    • Conducted research on advanced sensor technologies and their applications in industrial and environmental monitoring.
    • Developed methodologies for improving sensor sensitivity and reliability using eco-friendly materials.
  • [Previous Position, e.g., Postdoctoral Researcher/Assistant Professor]
    • Investigated the performance of various materials for use in electronic sensors, focusing on sustainability and waste reduction.
    • Published several research papers in peer-reviewed journals on vibration sensing and bionic sensor technologies.

Publication top Notes:

A Selective-Response Hypersensitive Bio-Inspired Strain Sensor Enabled by Hysteresis Effect and Parallel Through-Slits Structures

Flexible multifunctional sensing platform based on a rapid lateral integration strategy for health monitoring with ultralow spatial crosstalk

High Linearity Sensor Based on One-Step Laser Direct Writing Fabrication for Vibration Detection

Crack-Based Composite Flexible Sensor with Superhydrophobicity to Detect Strain and Vibration

Low-Cost and Paper-Based Micro-Electromechanical Systems Sensor for the Vibration Monitoring of Shield Cutters

Prof. Sebastiano Imposa | Piezoelectric sensor Award | Best Researcher Award

Prof. Sebastiano Imposa | Piezoelectric sensor Award | Best Researcher Award 

Prof. Sebastiano Imposa, University of Catania, Italy

An accomplished geophysicist, Dr. Sebastiano Imposa has served as an Associate Professor in Applied Geophysics (GEO/11) at the University of Catania since March 2019. He earned his MSc in Geological Sciences from the University of Catania in July 1982 and achieved professional qualification in Geology in June 1987. Prior to his current position, he was an Assistant Professor from November 1990 to February 2019 and has been an advisor to the National University Council since February 2017. Dr. Sebastiano Imposa has a distinguished research career, focusing on applied geophysical surveys for cultural heritage characterization, seismic response evaluation, and microzonation. He has authored approximately 200 papers, 7 monographs, and over 100 technical reports, contributing significantly to the field. He has led several research projects funded by MIUR and C.N.R., including studies on volcanic activity and seismic hazard assessment in eastern Sicily. His international experience includes a fellowship at the Institute de Physique du Globe in Paris, where he analyzed seismic data from satellite networks. Dr. [Name] remains actively engaged in both national and international research collaborations aimed at enhancing the understanding of geological and environmental processes.

Professional Profile:

Summary of Suitability for the Best Researcher Award:

Current Position:
The individual holds a prestigious role as an Associate Professor in Applied Geophysics (GEO/11) at the University of Catania since March 2019. They achieved the full professorship qualification in December 2019, showcasing their expertise and recognition within the academic community. As a National University Council advisor since 2017, they have an active role in shaping academic policy and direction.

🎓 Education and Training

  • MSc in Geological Sciences from the University of Catania (July 1982)
  • Professional qualification in Geology (June 1987)

🔬 Research Focus

His extensive research includes applied geophysical surveys for the conservation of cultural heritage, local seismic response evaluations, seismic microzonation, and dynamic characterization of strategic buildings using passive seismic surveys. He has contributed to numerous projects investigating seismic and volcanic activities in Sicily, with over 200 papers in national and international journals and conferences, 7 monographs, and more than 100 scientific reports.

📚 Key Projects

  • Physical phenomena precursors of volcanic eruptions (1991)
  • Seismogenic structure identification on Mount Etna (1993)
  • Seismic microzonation in southeastern Sicily (2002)
  • Analysis of Etna’s tectonic structures and deformation (2014)
  • Member of the Italy-Tunisia cross-border cooperation project MIAREM (2019-2022)

đź’ˇ Honors and Impact

His research plays a pivotal role in the geophysical analysis of environmental and cultural heritage in the Mediterranean region, contributing to risk assessment, environmental protection, and public safety.

Publication top Notes:

Vibration Analysis at Castello Ursino Picture Gallery (Sicily, Italy) for the Implementation of Self-Generating AlN-MEMS Sensors

Deformed archeological remains at Lilybaeum in Western Sicily (southern Italy) as possible ground signatures of coseismically-slipped fault in the area

Engineering Geological and Geophysical Studies Supporting Finite Element Analysis of Historical Buildings after Dynamic Identification

Integration of Geophysical Survey Data for the Identification of New Archaeological Remains in the Subsoil of the Akrai Greek Site (Sicily, Italy)

Extended Tromograph Surveys for a Full Experimental Characterisation of the San Giorgio Cathedral in Ragusa (Italy)

Dr Susana Novais | Physical Sensors | Best Researcher Award

Dr Susana Novais |Physical Sensors| Best Researcher Award

Dr Susana Novais ,Instituto de Engenharia de Sistemas e Computadores, Tecnologia e CiĂŞncia INESC TEC, Portugal

Dr. Susana Cristina Ribeiro Novais is an expert in optics and optoelectronics, currently serving as an Assistant Researcher at INESC TEC in Portugal. With extensive experience in both research and academic environments, Dr. Novais has made significant contributions to the field of optical fiber sensors and biomedical technologies. She holds a Ph.D. in Physics Engineering with a specialization in Optics and Optoelectronics, and has been involved in numerous high-impact research projects and international conferences. Her work is recognized for its innovation and depth, positioning her as a leading figure in her domain.

Professional Profile:

Suitability for the Best Researcher Award: 

Susana Cristina Ribeiro Novais is a highly deserving candidate for the Best Researcher Award due to her significant contributions to the fields of optics and biomedical technologies. Her impressive research output, leadership roles, and active participation in academic and professional communities highlight her exceptional qualifications. By addressing the identified areas for improvement, Dr. Novais could further strengthen her already distinguished profile, making her an exemplary choice for this prestigious recognition. Her work not only advances scientific knowledge but also has practical implications in technology and healthcare, underscoring her value as a leading researcher.

Education

Dr. Susana Cristina Ribeiro Novais earned her Ph.D. in Physics Engineering, specializing in Optics and Optoelectronics, from Universidade de Aveiro, Portugal, in February 2019, with distinction. Her doctoral thesis focused on optical fiber sensors for challenging media. She completed her M.Sc. in Biomedical Technologies with a focus on Biomechanics and Rehabilitation at Instituto Politécnico de Bragança in 2012. Her B.Sc. in Biomedical Engineering, also from Instituto Politécnico de Bragança, was awarded in 2010, with a thesis on vital sign monitoring systems.

 Work Experience

Dr. Novais is currently an Assistant Researcher at INESC TEC, where she has been working since June 2021. Prior to this role, she served as a Research Fellow at INESC TEC and Universidade de Aveiro, contributing to several research projects in optics and biomedical technologies. Her experience also includes working with Johnson Matthey Systems in the UK and conducting short-term scientific missions at Helmholtz Institute and Johnson Matthey Battery Systems. Her roles have involved significant contributions to both applied and theoretical research.

 Skills

Dr. Susana Novais possesses a diverse skill set in physics and optics, including expertise in optical fiber sensors and optoelectronics. She is proficient in designing and implementing advanced optical systems for various applications. Her skills extend to biomedical technologies, particularly in developing micro-devices and monitoring systems. She is also adept in project management, scientific communication, and technical review, with extensive experience in organizing conferences and reviewing scientific literature.

 Awards and Honors

Dr. Novais has been recognized for her outstanding contributions to optics and biomedical technologies. Her Ph.D. thesis was awarded with praise and distinction, highlighting the significance of her research on optical fiber sensors. Her involvement in key projects such as FCT project ENDOR and European Project SIRBATT underscores her reputation in the field. She has also been honored for her role as a local organizer and technical chair for major conferences like EOSAM 2022.

 Membership

Dr. Susana Cristina Ribeiro Novais is an active member of several professional organizations related to optics and physics. She has been involved in the European Optical Society and various scientific committees, reflecting her engagement with the scientific community. Her memberships provide her with platforms to contribute to advancements in her field and collaborate with other experts in optics and optoelectronics.

 Teaching Experience

Dr. Novais has extensive teaching experience, including her role as a co-supervisor for Master’s theses in Engineering Physics at Universidade Católica Portuguesa. Her academic involvement extends to serving as a main examiner and jury member for the best thesis in optics and photonics in Portugal. Her teaching experience reflects her commitment to educating the next generation of scientists and engineers in the field of optics and optoelectronics.

 Research Focus

Dr. Susana Novais’s research focuses on optics and optoelectronics, particularly in the development and application of optical fiber sensors. Her work includes advancing technologies for challenging media and exploring innovative solutions in biomedical technologies. She is involved in high-impact projects such as the FCT project ENDOR and European Project SIRBATT, addressing key issues in renewable energy and sensor technology. Her research aims to push the boundaries of current optical technologies and their applications.

Publication top Notes:
  • “Coreless silica fiber sensor based on self-image theory and coated with graphene oxide”
    • Year: 2024
    • Journal: Optical Sensing and Detection VIII (Conference Paper)
    • DOI: 10.1117/12.3022374
  • “Linear Fiber Laser Configurations for Optical Concentration Sensing in Liquid Solutions”
    • Year: 2024
    • Journal: Photonics
    • DOI: 10.3390/photonics11050393
  • “Linear Fiber Laser Configurations for Optical Concentration Sensing in Liquid Solutions”
    • Year: 2024
    • Type: Preprint
    • DOI: 10.20944/preprints202402.0004.v1
  • “Enhanced Sensitivity in Optical Sensors through Self-Image Theory and Graphene Oxide Coating”
    • Year: 2024
    • Journal: Sensors
    • DOI: 10.3390/s24030891
  • “Paracetamol concentration-sensing scheme based on a linear cavity fiber laser configuration”
    • Year: 2023
    • Journal: Optical Fiber Technology
    • DOI: 10.1016/j.yofte.2023.103407
  • “Refractive Index Measurements of Ethanol–Water Binary Liquid Solutions Using a Graded-Index Fiber Tip Sensor”
    • Year: 2023
    • Journal: IEEE Sensors Letters
    • DOI: 10.1109/LSENS.2023.3303079
  • “Measurement of paracetamol concentration using a fiber laser system”
    • Year: 2023
    • Conference: 2023 IEEE 7th Portuguese Meeting on Bioengineering (ENBENG)
    • DOI: 10.1109/enbeng58165.2023.10175344
  • “Transmissive glucose concentration plasmonic Au sensor based on unclad optical fiber”
    • Year: 2023
    • Conference: 2023 IEEE 7th Portuguese Meeting on Bioengineering (ENBENG)
    • DOI: 10.1109/enbeng58165.2023.10175342
  • “Erbium-doped fiber ring cavity for the measurement of refractive index variations”
    • Year: 2023
    • Conference: European Workshop on Optical Fibre Sensors (EWOFS 2023)
    • DOI: 10.1117/12.2678101
  • “Measurement of Paracetamol Concentration Using an Erbium-Doped Fiber Ring Cavity”
    • Year: 2023
    • Journal: Photonics
    • DOI: 10.3390/photonics10010050

 

Prof. Tao Tang | Sensor Module | Best Researcher Award

Prof. Tao Tang | Sensor Module | Best Researcher Award 

Prof. Tao Tang, Southwest Minzu University, China 

Dr. Tao Tang is a distinguished Professor at the College of Electronic Engineering, Chengdu University of Information Technology (CUIT), China. He earned his Bachelor’s degree from Leshan Normal University in 2005 and subsequently completed his Master’s and Ph.D. degrees at Southwest Jiaotong University between 2005 and 2011. With a profound expertise in antenna and wave propagation, computational electromagnetics, and electromagnetic compatibility, Dr. Tang has contributed significantly to these fields through both academic and practical endeavors.

Professional Profile:

 

Summary of Suitability for the Best Researcher Award:

Dr. Tao Tang is a highly accomplished researcher and professor in the field of antenna and wave propagation, computational electromagnetics, and electromagnetic compatibility. His extensive academic background, including a Ph.D. from Southwest Jiao tong University and postdoctoral fellowships at prestigious institutions, reflects a strong foundation in his areas of expertise.

Education

  • 2001–2005: Bachelor of Science (B.S.) in [unspecified field], Leshan Normal University, Leshan, China.
  • 2005–2011: Master and Ph.D. in [unspecified fields], Southwest Jiaotong University, Chengdu, China.

Professional Experience

  • 2011–2013: Lecturer, College of Electronic Engineering, Chengdu University of Information Technology, Chengdu, China.
  • 2014–2020: Associate Professor, College of Electronic Engineering, Chengdu University of Information Technology, Chengdu, China.
  • 2015–2017: Postdoctoral Fellow, Institute of Applied Physics, University of Electronic Science and Technology of China, Chengdu, China.
  • 2017–2020: Postdoctoral Fellow, School of Information and Communication Engineering, University of Electronic Science and Technology of China, Chengdu, China.
  • 2019-2020: Visiting Scholar, Department of Electrical and Computer Engineering, University of Waterloo, Waterloo, Canada.
  • 2019-Present: Head, Department of Electronic Information Science and Technology, Chengdu University of Information Technology, Chengdu, China.
  • 2019-Present: Director, Pre-research Center, Sichuan SIP Electronic Technology Co., Ltd., Chengdu, China.
  • 2021-Present: Professor, College of Electronic Engineering, Chengdu University of Information Technology, Chengdu, China.

Publication top Notes:

A Self-Packaging Comb Spectrum Generator Based on Substrate Integrated Suspension Line

Design of X-Band Circulator and Isolator for High-Peak-Power Applications

A Flexible Wearable Sensor Based on Laser-Induced Graphene for High-Precision Fine Motion Capture for Pilots

Enhancing the Directivity of Antennas Using Plasma Rings

Numerical Modeling of the Radio Wave Over-the-Horizon Propagation in the Troposphere

Frequency Reconfigurable Near-Zero Refractive Index Material for Antenna Gain Enhancement Applications

Frequency Reconfigurable Near-Zero Refractive Index Material for Antenna Gain Enhancement Applications

 

Dr. Makavelo Germain Deon | Analog sensors Award | Best Researcher Award

Dr. Makavelo Germain Deon | Analog sensors Award | Best Researcher Award

Dr. Makavelo Germain Deon, China University of Mining and Technology, China

Makavelo Germain is a passionate researcher and dynamic professional specializing in mining engineering with a focus on strata and ground control. He is currently a Ph.D. candidate at the China University of Mining and Technology, Xuzhou, Jiangsu Province, China, where he specializes in Solid Backfilling Mining Technology for Ground Control, Rock Mechanics, and Green Mining. With a strong educational foundation, he holds a Master’s degree in Mining Engineering and a Bachelor’s degree in Geology from the University of Mahajanga, Madagascar. Makavelo’s professional journey includes roles as a Waterproof Supervisor and Technician in Astana, Kazakhstan, and HVAC Technician and Assistant Technician in Mahajanga, Madagascar. Fluent in Malagasy, English, French, and possessing basic proficiency in Russian and Chinese, he excels in cross-functional collaboration and leadership, leveraging his analytical skills to drive process improvements in his field.

Professional Profile:

Summary of Suitability for Best Researcher Award

Deon Makavelo Germain is a highly qualified candidate for the Best Researcher Award, particularly in the field of mining engineering. His extensive academic and professional experience, combined with his proven track record of impactful research, makes him a strong contender for this accolade.

🎓 Education

  • Ph.D. Candidate in Mining Engineering (2021 – Present)
    Specialized in Solid Backfilling Mining Technology for Ground Control, Rock Mechanics, and Green Mining at China University of Mining and Technology, Xuzhou, Jiangsu Province, China.
  • Master of Mining Engineering (2014 – 2017)
    Specialized in Solid Backfilling Mining Technology for Ground Control, Rock Mechanics, and Green Mining at China University of Mining and Technology, Xuzhou, Jiangsu Province, China.
  • Chinese Language Course (HSK-4) (2013 – 2014)
    Completed one year of Chinese Language Course at the International College, China University of Mining and Technology, Xuzhou, Jiangsu Province, China.
  • Bachelor of Geology (2007 – 2010)
    Earned a Bachelor’s degree in Geology from the Faculty of Sciences, University of Mahajanga, Madagascar.

🛠️ Experience

  • Waterproof Supervisor (2018 – 2021)
    Building Waterproofing Supervisor at Express Insulating Materials Co-EIMC, Astana, Kazakhstan.
  • Waterproof Technician (2017 – 2018)
    Worked as a Building Waterproofing Supervisor at Express Insulating Materials Co-EIMC, Astana, Kazakhstan.
  • HVAC Technician (2012 – 2013)
    HVAC Technician at FRIMECAM Co., Mahajanga, Madagascar.
  • HVAC Assistant Technician (2009 – 2012)
    HVAC Assistant Technician at FRIGOMAD Co., Mahajanga, Madagascar.

Publication top Notes:

Analysis of Solid Backfilling Effects on Strata and Ground Subsidence in a Longwall Coal Mine Beneath a City

Study of Slope Stability of the Mining Wall in an Open-Pit Coal Mine by the Paste Cut-and-Backfill Method

Sensitivity analysis of key factors influencing compression-induced deformation of waste rocks for backfilling to reduce environmental pollution

Recycling of crushed waste rock as backfilling material in coal mine: effects of particle size on compaction behaviours

Influential Factors in Transportation and Mechanical Properties of Aeolian Sand-Based Cemented Filling Material

 

Dr. DAVIDE BRIVIO | Electronic Sensors | Best Researcher Award

Dr. DAVIDE BRIVIO | Electronic Sensors | Best Researcher Award 

Dr. DAVIDE BRIVIO, BWH, United States

Dr. Davide Brivio is an accomplished physicist specializing in radiation oncology physics. Born in Carate Brianza (MB), Italy, he embarked on his academic journey at the Università degli Studi di Milano (University of Milan), where he earned his B.Sc. in Physics in 2006, followed by an M.Sc. in Physics in 2008 under the guidance of advisors Nicola Piovella and Robin Kaiser. He further advanced his expertise by obtaining a Ph.D. in Physics in 2012, mentored by Dr. Cialdi Simone. After completing his Ph.D., Dr. Brivio pursued postdoctoral training at Brigham and Women’s Hospital, Harvard Medical School, where he served as a Post-Doctoral Fellow in Radiation Oncology Physics from 2013 to 2019 under the supervision of Dr. Piotr Zygmanski. His dedication to the field led him to complete a Medical Physics Residency in Radiation Oncology Physics from 2019 to 2022, directed by Dr. Yulia Lyatskaya, with Dr. Zygmanski as his research advisor.

 

Professional Profile:

 

Summary of Suitability for Best Researcher Award

Davide Brivio has an extensive and impressive academic and professional background, which makes him a strong candidate for the Best Researcher Award at the Faculty of Medicine of Harvard University. Below are the key points that highlight his qualifications:

Education:

  • 2006: B.Sc. Physics, UniversitĂ  degli Studi di Milano (University of Milan), Milan (MI), Italy
  • 2008: M.Sc. Physics (Advisors: Nicola Piovella, Robin Kaiser), UniversitĂ  degli Studi di Milano (University of Milan), Milan (MI), Italy
  • 2012: Ph.D. Physics (Advisor: Dr. Cialdi Simone), UniversitĂ  degli Studi di Milano (University of Milan), Milan (MI), Italy

Postdoctoral Training:

  • 2013-2019: Post-Doctoral Fellow in Radiation Oncology Physics (Advisor: Dr. Piotr Zygmanski), Brigham and Women’s Hospital, Harvard Medical School
  • 2019-2022: Medical Physics Resident in Radiation Oncology Physics (Director: Dr. Yulia Lyatskaya, Research Advisor: Dr. Piotr Zygmanski), Harvard Medical School, Boston, MA

Faculty Academic Appointments:

  • 07/2022-present: Instructor in Radiation Oncology (Physics), Harvard Medical School

Appointments at Hospitals/Affiliated Institutions:

  • 07/2022-present: Clinical Physicist in Radiation Oncology (Physics), Brigham and Women’s Hospital, Boston, MA

Major Administrative Leadership Positions:

  • 2021-2022: Senior Resident, Medical Physics Residency (year-round), Harvard Medical School

Committee Service:

  • National:
    • 2022-present: Invited Abstract Evaluation Committee for AAPM Annual Meeting, American Association of Physicists in Medicine
    • 2023-present: Physics PhD Steering Committee, UniversitĂ  degli Studi di Milano, Italy (Milan University)
  • Local:
    • 2024: MGB Technology Evaluation Committee, MGB
    • 2024: Master Thesis Committee, UML

Professional Societies:

  • 2015-present: Member, American Association of Physicists in Medicine
  • 2015-present: Member, New England Chapter of the American Association of Physicists in Medicine
  • 2019-2023: Member, Radiological Society of North America (RSNA)
  • 2023-present: Member, American Brachytherapy Society (ABS)

Editorial Activities:

  • Ad hoc Reviewer for:
    • Medical Physics
    • Physics in Medicine and Biology
    • International Journal of Radiation OncologyBiologyPhysics
    • Physica Medica
    • Radiation Research

Publication top Notes:

Remote sensing of high energy particle currents (HEC): towards HEC radiography

X-ray Induced Electric Currents in Anodized Ta2O5: Towards a Large-Area Thin-Film Sensor

Radioactive source localization employing resistive electrode array (REA) detector

Resistive electrode array (REA) for radiotherapy beam monitoring and quality assurance

Remote sensing array (RSA) for linac beam monitoring

Gold nanoparticle detection and quantification in therapeutic MV beams via pair production