Melanie Müller
Affiliations: | Fritz Haber Institute of the Max Planck Society |
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Parents
Sign in to add mentorRalph Ernstorfer | grad student | 2011-2016 | Fritz Haber Institute of the Max Planck Society |
Martin Weinelt | grad student | 2011-2016 | FU Berlin |
Children
Sign in to add traineeNatalia Martín Sabanés | post-doc | 2018-2020 | Fritz Haber Institute of the Max Planck Society |
Fabian Schulz | post-doc | 2019-2022 | Fritz Haber Institute of the Max Planck Society |
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Publications
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Liu S, Hammud A, Hamada I, et al. (2022) Nanoscale coherent phonon spectroscopy. Science Advances. 8: eabq5682 |
Vogel T, Omar A, Mansourzadeh S, et al. (2022) Average power scaling of THz spintronic emitters efficiently cooled in reflection geometry. Optics Express. 30: 20451-20468 |
Martín Sabanés N, Krecinic F, Kumagai T, et al. (2022) Femtosecond Thermal and Nonthermal Hot Electron Tunneling Inside a Photoexcited Tunnel Junction. Acs Nano |
Müller M, Martín Sabanés N, Kampfrath T, et al. (2020) Phase-Resolved Detection of Ultrabroadband THz Pulses inside a Scanning Tunneling Microscope Junction. Acs Photonics. 7: 2046-2055 |
Liu S, Cirera B, Sun Y, et al. (2020) Dramatic Enhancement of Tip-Enhanced Raman Scattering Mediated by Atomic Point Contact Formation. Nano Letters |
Liu S, Müller M, Sun Y, et al. (2019) Resolving the Correlation between Tip-Enhanced Resonance Raman Scattering and Local Electronic States with 1 nm Resolution. Nano Letters |
Böckmann H, Liu S, Müller M, et al. (2019) Near-Field Manipulation in a Scanning Tunneling Microscope Junction with Plasmonic Fabry-Pérot Tips. Nano Letters |
Böckmann H, Müller M, Hammud A, et al. (2019) Near-Field Spectral Response of Optically Excited Scanning Tunneling Microscope Junctions Probed by Single-Molecule Action Spectroscopy. The Journal of Physical Chemistry Letters |
Müller M, Kravtsov V, Paarmann A, et al. (2016) Nanofocused Plasmon-Driven Sub-10 fs Electron Point Source Acs Photonics. 3: 611-619 |
Müller M, Paarmann A, Ernstorfer R. (2014) Femtosecond electrons probing currents and atomic structure in nanomaterials. Nature Communications. 5: 5292 |