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Shuai Wei

Associate Professor at Aarhus University

Aarhus University

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Denmark

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Research Interests

Condensed Matter Physics

100%

Materials Chemistry

90%

Materials Science

60%

Phase Transformation

50%

Solid State Physics

40%

Crystallization

30%

Phase Transition

30%

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Positions2

Publisher
source

Shuai Wei

University Name
.

Aarhus University

Postdoc: Operando on chip investigation of failure in optical phase change materials using ultrafast X ray

Aarhus University, Department of Chemistry, Denmark, is offering a fully funded 2-year postdoctoral position focused on the operando investigation of failure mechanisms in optical phase change materials used in photonic devices. The project leverages advanced synchrotron X ray and X ray free electron laser (XFEL) techniques to probe structural dynamics and device degradation during rapid switching between amorphous and crystalline states. These materials are pivotal for emerging photonic computing technologies, and the research aims to provide real-time insights into their performance and reliability. The postdoctoral researcher will design and execute operando experiments using laser pump and X ray probe total scattering, WAXS, SAXS, imaging, and femtosecond X ray diffraction. Target facilities include DESY, MAX IV, European XFEL, ESRF, APS, and LCLS, depending on awarded beamtime. The project is supported by the Independent Research Fund Denmark and offers strong access to international collaborations and large-scale experimental campaigns. The research group, Amorphous Materials Lab, provides a collaborative environment across the Department of Chemistry, CENSEMAT Centre for Energy Materials, and the iMAT Center for Integrated Materials Research. Key responsibilities include co-leading beamtime proposals and campaigns, working with on-chip photonic device platforms, analyzing large scattering and diffraction datasets, and connecting structural signatures to device-level failure. The postdoc will contribute to experimental planning, proposal writing, and dissemination of results through publications and international conferences. Structured mentorship is provided to support independent research profile development, and the postdoc will have the freedom to pursue a related side project aligned with their interests. Applicants must hold a PhD in chemistry, physics, materials science, or a related field, with experience in synchrotron X ray scattering and/or XFEL experiments, crystallographic and scattering data analysis, and handling large datasets. Programming skills (e.g., Python) and experience with operando or time-resolved experiments and X ray instrumentation are desirable. Fluency in written and spoken English is required. The position offers a competitive salary, support for international conference participation, and possible research stays. Aarhus University provides a supportive environment for career development, including relocation services and career counselling for international researchers. The application deadline is June 17, 2026. Applications must be submitted via Aarhus University's recruitment system and include a CV, degree certificate, publication list, statement of future research plans, information about research activities, teaching portfolio, and verified teaching experience. For further information, contact Associate Prof. Shuai Wei at [email protected]. More details about the research group can be found at Amorphous Materials Lab .

1 month ago

Publisher
source

Shuai Wei

University Name
.

Aarhus University

Postdoc: Operando On-Chip Investigation of Failure in Optical Phase Change Materials Using Ultrafast X-ray

Aarhus University, Department of Chemistry, invites applications for a fully funded 2-year postdoctoral position starting September 1, 2026 or later. This research opportunity focuses on advancing the understanding of failure mechanisms in optical phase change materials used in photonic devices, leveraging state-of-the-art synchrotron X-ray and X-ray free electron laser (XFEL) techniques. Optical phase change materials, which can be reversibly switched between amorphous and crystalline states on ultrafast timescales, are key enablers for emerging photonic computing technologies. The postdoctoral researcher will perform operando and time-resolved structural characterization of materials and devices during switching, utilizing methods such as laser pump and X-ray probe total scattering, WAXS, SAXS, imaging, and femtosecond X-ray diffraction. These experiments will probe structure and dynamics in real time under device-relevant conditions, with access to international large-scale facilities including DESY, MAX IV, European XFEL, ESRF, APS, and LCLS, depending on awarded beamtime. The project is supported by the Independent Research Fund Denmark. Responsibilities include co-leading beamtime proposals and campaigns, working with on-chip photonic device platforms in collaboration with project partners, designing and executing operando experiments to probe structural dynamics and degradation during repeated switching, analyzing large scattering and diffraction datasets, and connecting structural signatures to device-level failure. The postdoc will contribute to experimental campaigns, dissemination of results, and publication in leading journals, as well as presenting at international conferences. The position offers a competitive salary, strong access to international collaborations, substantial project ownership including first author publication opportunities, structured mentorship for developing an independent research profile, and support for proposal writing and leadership in experimental planning. The postdoc will have freedom to develop a related side project aligned with their interests, and support for international conference participation and possible research stays is provided. The collaborative environment spans the Department of Chemistry, CENSEMAT Centre for Energy Materials, and the iMAT Center for Integrated Materials Research. Applicants must hold a PhD in chemistry, physics, materials science, or a related field. Required qualifications include experience with synchrotron X-ray scattering and/or XFEL experiments, strong skills in crystallographic and scattering data analysis, handling large datasets, and a solid understanding of crystallography, powder X-ray diffraction, diffuse scattering, phase transitions, and background modeling. Programming skills (e.g., Python) are desirable. Experience with operando or time-resolved experiments and X-ray instrumentation is preferred. Ability to work independently and collaboratively, and fluency in written and spoken English are essential. The application must be submitted via Aarhus University's recruitment system. Required documents include a CV, degree certificate, publication list, statement of future research plans, information about research activities, teaching portfolio, and verified teaching experience. Applications must be in English. For further information, contact Associate Prof. Shuai Wei at [email protected]. The deadline for applications is June 17, 2026. Aarhus University offers a broad variety of services for international researchers and accompanying families, including relocation service and career counselling to expat partners. The university is committed to equality and diversity, and welcomes all applicants. Learn more about the research group at AmorphousMatLab and about Aarhus University at www.international.au.dk/ .

1 month ago

Articles17

Collaborators8

Matthias Wuttig

-

GERMANY

Marco Bernasconi

-

ITALY

Bernd Markert

Institute Director, Professor

RWTH Aachen University

GERMANY

Pierre Lucas

-

UNITED STATES

Jianye Shi

RWTH Aachen University

GERMANY

Peihao Sun

University of Padua

ITALY

Hidetaka Kasai

Associate Professor

Osaka University

JAPAN

Yoshio Kono

-

JAPAN