Peter Degenfeld-Schonburg
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Dissipative optomechanical preparation of macroscopic quantum superposition states
M Abdi, P Degenfeld-Schonburg, M Sameti, C Navarrete-Benlloch, ...
Physical Review Letters 116 (23), 233604, 2016
Self-consistent projection operator theory for quantum many-body systems
P Degenfeld-Schonburg, MJ Hartmann
Physical Review B 89 (24), 245108, 2014
Degenerate optomechanical parametric oscillators: Cooling in the vicinity of a critical point
P Degenfeld-Schonburg, M Abdi, MJ Hartmann, C Navarrete-Benlloch
Physical Review A 93 (2), 023819, 2016
Amplitude-and gas pressure-dependent nonlinear damping of high-Q oscillatory MEMS micro mirrors
U Nabholz, W Heinzelmann, JE Mehner, P Degenfeld-Schonburg
Journal of Microelectromechanical Systems 27 (3), 383-391, 2018
Self-consistent projection operator theory in nonlinear quantum optical systems: A case study on degenerate optical parametric oscillators
P Degenfeld-Schonburg, C Navarrete–Benlloch, MJ Hartmann
Physical Review A 91 (5), 053850, 2015
Spontaneous parametric down-conversion induced by non-degenerate three-wave mixing in a scanning MEMS micro mirror
U Nabholz, F Schatz, JE Mehner, P Degenfeld-Schonburg
Scientific reports 9 (1), 1-13, 2019
Classical and quantum-linearized descriptions of degenerate optomechanical parametric oscillators
S Pina-Otey, F JimÚnez, P Degenfeld-Schonburg, C Navarrete-Benlloch
Physical Review A 93 (3), 033835, 2016
Simulation and modelling of the drive mode nonlinearity in MEMS-gyroscopes
M Putnik, S Cardanobile, C Nagel, P Degenfeld-Schonburg, J Mehner
Procedia engineering 168, 950-953, 2016
Signatures of single-site addressability in resonance fluorescence spectra
P Degenfeld-Schonburg, E Del Valle, MJ Hartmann
Physical Review A 85 (1), 013842, 2012
Simulation methods for generating reduced order models of MEMS sensors with geometric nonlinear drive motion
M Putnik, S Cardanobile, M Sniegucki, S Kehrberg, M Kuehnel, ...
2018 IEEE International Symposium on Inertial Sensors and Systems (INERTIALá…, 2018
Incorporating geometrical nonlinearities in reduced order models for MEMS gyroscopes
M Putnik, M Sniegucki, S Cardanobile, S Kehrberg, M Kuehnel, C Nagel, ...
2017 IEEE International Symposium on Inertial Sensors and Systems (INERTIALá…, 2017
Nonlinear dynamical system model for drive mode amplitude instabilities in MEMS gyroscopes
U Nabholz, M Curcic, JE Mehner, P Degenfeld-Schonburg
2019 IEEE International Symposium on Inertial Sensors and Systems (INERTIALá…, 2019
A static approach for the frequency shift of parasitic excitations in MEMS gyroscopes with geometric nonlinear drive mode
M Putnik, S Cardanobile, S Kehrberg, C Nagel, P Degenfeld-Schonburg, ...
2017 IEEE International Symposium on Inertial Sensors and Systems (INERTIALá…, 2017
Parametric amplification of broadband vibrational energy harvesters for energy-autonomous sensors enabled by field-induced striction
U Nabholz, L Lamprecht, JE Mehner, A Zimmermann, ...
Mechanical Systems and Signal Processing 139, 106642, 2020
Spontaneous parametric down-conversion induced by optomechanical gradient forces in nanophotonic waveguides
M Ashour, JN Caspers, EM Weig, P Degenfeld-Schonburg
arXiv preprint arXiv:2002.04022, 2020
Validating the Critical Point of Spontaneous Parametric Downconversion for Over 600 Scanning MEMS Micromirrors on Wafer Level
U Nabholz, F Stockmar, JE Mehner, P Degenfeld-Schonburg
IEEE Sensors Letters 4 (1), 1-4, 2020
Micromechanical rotational rate sensor system and corresponding production method
N Bode, A Lassl, B Kuhlmann, J Liewald, M Kuehnel, NF Kuhlmann, ...
US Patent App. 16/127,791, 2019
Dissipative Optomechanical Preparation of Macroscopic Quantum Superposition States
C Navarrete-Benlloch, M Abdi, P Degenfeld-Schonburg, M Sameti, ...
APS 2017, V13. 002, 2017
Self-consistent projection operator theory
P Degenfeld-Schonburg
Technische Universitńt MŘnchen, 2016
Study of coupled QED-cavities using the self-consistent Mori projector method
S Okubo, M Eto, P Degenfeld-Schonburg, MJ Hartmann
Journal of Physics: Conference Series 568 (1), 012014, 2014
Il sistema al momento non pu˛ eseguire l'operazione. Riprova pi¨ tardi.
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