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Max Born Institute
for Nonlinear Optics and Short Pulse Spectroscopy
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1.1 Fundamentals of Extreme Photonics
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3.1 Dynamics of Condensed Phase Molecular Systems
3.2 Solids and Nanostructures: Electrons, Spins, and Phonons
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About MBI
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About MBI
Introduction
+ |
Organization
Organization chart
Scientific Advisory Board
Division A: Attosecond Physics
Division B: Transient Electronic Structure and Nanoscience
Division C: Precision Physics
Forschungsverbund Berlin
Leibniz Association
Good scientific practice
Works council
+ |
Service
Services and infrastructure for research
Max-Born-Hall
Library
Guest Program
Teaching
Application laboratories
+ |
History
Development of the MBI
Max Born
+ |
Equal Opportunity
Family friendly employer
Equal opportunity
Education and support for young scientists
Partner
Location
Research
+ |
Research
+ |
Projects
1.1 Fundamentals of Extreme Photonics
1.2 Ultrafast Laser Physics and Nonlinear Optics
2.1 Time-resolved XUV-science
2.2 Strong-field Few-body Physics
3.1 Dynamics of Condensed Phase Molecular Systems
3.2 Solids and Nanostructures: Electrons, Spins, and Phonons
3.3 Transient Structures and Imaging with X-rays
4.1 Implementation of Lasers and Measuring Techniques
4.2 Application Laboratories and Technology Transfer
4.3 Nanoscale Samples and Integrated Optics
Research Program
Publications
Annual Reports
Highlights
+ |
Habilitation, PhD, Master- and Diploma Theses
Habilitations
Dissertations
Diploma and Master Thesis
People
Events
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Optik / Photonik: Projekt und Seminar 2025-01-27
Optik / Photonik: Projekt und Seminar 2025-01-27 Prof. Dr. Kurt Busch Humboldt Universität zu Berlin R: 2.102, Newtonstraße 15
Optik / Photonik: Projekt und Seminar 2025-02-03
Optik / Photonik: Projekt und Seminar 2025-02-03 Prof. Dr. Kurt Busch Humboldt Universität zu Berlin R: 2.102, Newtonstraße 15
Optik / Photonik: Projekt und Seminar 2025-02-10
Optik / Photonik: Projekt und Seminar 2025-02-10 Prof. Dr. Kurt Busch Humboldt Universität zu Berlin R: 2.102, Newtonstraße 15
Controlling chemistry at extreme time scales 2024-10-02
The technological breakthrough of attosecond light sources1, which was highlighted with the Nobel Prize in Physics in 2023, has given us direct access to the electron time scale in matter. This has…
Röntgenphysik I 2024-10-16
Röntgenphysik I 2024-10-16 Prof. Dr. Stefan Eisebitt Technische Universität Berlin / Max-Born-Institut ER 325 (Charlottenburg)
Röntgenphysik I 2024-10-23
Röntgenphysik I 2024-10-23 Prof. Dr. Stefan Eisebitt Technische Universität Berlin / Max-Born-Institut ER 325 (Charlottenburg)
Röntgenphysik I 2024-10-30
Röntgenphysik I 2024-10-30 Prof. Dr. Stefan Eisebitt Technische Universität Berlin / Max-Born-Institut ER 325 (Charlottenburg)
Röntgenphysik I 2024-11-06
Röntgenphysik I 2024-11-06 Prof. Dr. Stefan Eisebitt Technische Universität Berlin / Max-Born-Institut ER 325 (Charlottenburg)
Röntgenphysik I 2024-11-13
Röntgenphysik I 2024-11-13 Prof. Dr. Stefan Eisebitt Technische Universität Berlin / Max-Born-Institut ER 325 (Charlottenburg)
Röntgenphysik I 2024-11-20
Röntgenphysik I 2024-11-20 Prof. Dr. Stefan Eisebitt Technische Universität Berlin / Max-Born-Institut ER 325 (Charlottenburg)
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