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PhD student - Light-Matter-Interaction at Interfaces(m/w/x)
Ultrafast electron diffraction experiments on doped metal halide perovskites. ~100 fs temporal resolution UED instrument experience required. Family-friendly workplace, commitment to diversity.
Requirements
- Master’s or Diploma degree in physics
- Very good knowledge in solid-state physics
- Prior experience in ultrafast electron diffraction
- Prior experience in microscopy
- Prior experience in ultrafast laser physics
- Prior experience working with high vacuum equipment
- Excellent verbal and written communications skills in English
Tasks
- Conduct ultrafast electron diffraction (UED) experiments
- Investigate structural dynamics in doped metal halide perovskites
- Use state-of-the-art 90 keV UED instrument with ~100 fs temporal resolution
- Implement radiofrequency compressed electron pulses
- Perform high-sensitivity direct electron detection
- Utilize tunable optical parametric amplifier and harmonic generation
- Design and implement cryocooling of samples to ~20 K
- Analyse diffraction data and interpret results
- Collaborate with colleagues on nanocrystal synthesis and thin-film preparation
- Conduct transient absorption spectroscopy and time-resolved photoluminescence
- Participate in modelling and complementary steady-state optical and electron spectroscopies
- Contribute to joint studies for a complete microscopic picture of material dynamics
- Engage in complementary MeV-UED measurements at major international facilities
Education
- Master's degree
Languages
- English – Business Fluent
Tools & Technologies
- ultrafast electron diffraction
- microscopy
- ultrafast laser physics
- high vacuum equipment
Benefits
Family Support
- Family-friendly workplace certification
Informal Culture
- Commitment to diversity and inclusion
Purpose-Driven Work
- Preference for applicants with disabilities
Career Advancement
- Career opportunities for women
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PhD student - Light-Matter-Interaction at Interfaces(m/w/x)
Ultrafast electron diffraction experiments on doped metal halide perovskites. ~100 fs temporal resolution UED instrument experience required. Family-friendly workplace, commitment to diversity.
Requirements
- Master’s or Diploma degree in physics
- Very good knowledge in solid-state physics
- Prior experience in ultrafast electron diffraction
- Prior experience in microscopy
- Prior experience in ultrafast laser physics
- Prior experience working with high vacuum equipment
- Excellent verbal and written communications skills in English
Tasks
- Conduct ultrafast electron diffraction (UED) experiments
- Investigate structural dynamics in doped metal halide perovskites
- Use state-of-the-art 90 keV UED instrument with ~100 fs temporal resolution
- Implement radiofrequency compressed electron pulses
- Perform high-sensitivity direct electron detection
- Utilize tunable optical parametric amplifier and harmonic generation
- Design and implement cryocooling of samples to ~20 K
- Analyse diffraction data and interpret results
- Collaborate with colleagues on nanocrystal synthesis and thin-film preparation
- Conduct transient absorption spectroscopy and time-resolved photoluminescence
- Participate in modelling and complementary steady-state optical and electron spectroscopies
- Contribute to joint studies for a complete microscopic picture of material dynamics
- Engage in complementary MeV-UED measurements at major international facilities
Education
- Master's degree
Languages
- English – Business Fluent
Tools & Technologies
- ultrafast electron diffraction
- microscopy
- ultrafast laser physics
- high vacuum equipment
Benefits
Family Support
- Family-friendly workplace certification
Informal Culture
- Commitment to diversity and inclusion
Purpose-Driven Work
- Preference for applicants with disabilities
Career Advancement
- Career opportunities for women
Like this job?
BetaYour Career Agent finds similar jobs for you every day.
About the Company
Max Born Institut
Industry
Research
Description
Das Max-Born-Institut betreibt Grundlagenforschung auf dem Gebiet der nichtlinearen Optik und Kurzzeitdynamik mit Laserlicht.
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