Eva-Maria Graefe
#58,852
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German mathematical physicist
Eva-Maria Graefe's AcademicInfluence.com Rankings
Eva-Maria Graefemathematics Degrees
Mathematics
#3157
World Rank
#4721
Historical Rank
Mathematical Physics
#64
World Rank
#76
Historical Rank
Measure Theory
#4101
World Rank
#4834
Historical Rank
Eva-Maria Graefephysics Degrees
Physics
#8003
World Rank
#10100
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Particle Physics
#520
World Rank
#545
Historical Rank
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Mathematics Physics
Eva-Maria Graefe's Degrees
- PhD Physics University of Göttingen
- Masters Physics University of Göttingen
- Bachelors Physics University of Göttingen
Why Is Eva-Maria Graefe Influential?
(Suggest an Edit or Addition)According to Wikipedia, Eva-Maria Graefe is a German mathematical physicist who works as a reader in mathematical physics at Imperial College London and as a University Research Fellow of the Royal Society. Her research involves ultracold atoms and non-Hermitian quantum mechanics, an area she describes informally as the study of "holes in quantum systems" by which dissipation degrades their quantum behavior.
Eva-Maria Graefe's Published Works
Published Works
- A non-Hermitian symmetric Bose–Hubbard model: eigenvalue rings from unfolding higher-order exceptional points (2008) (166)
- Signatures of three coalescing eigenfunctions (2011) (148)
- Mean-field dynamics of a non-Hermitian Bose-Hubbard dimer. (2008) (144)
- PT-symmetric sinusoidal optical lattices at the symmetry-breaking threshold (2011) (107)
- Quantum-classical correspondence for a non-Hermitian Bose-Hubbard dimer (2010) (99)
- Mixed-state evolution in the presence of gain and loss. (2012) (98)
- Stationary states of a PT symmetric two-mode Bose–Einstein condensate (2012) (84)
- Mean-field dynamics of a Bose-Einstein condensate in a time-dependent triple-well trap: Nonlinear eigenstates, Landau-Zener models and STIRAP (2005) (75)
- Classical limit of non-Hermitian quantum dynamics—a generalized canonical structure (2009) (59)
- On complexified mechanics and coquaternions (2010) (58)
- Towards a generalized Landau-Zener formula for an interacting Bose-Einstein condensate in a two-level system (2006) (48)
- Breakdown of adiabatic transfer of light in waveguides in the presence of absorption (2012) (46)
- Wave-packet evolution in non-Hermitian quantum systems (2010) (45)
- Bloch oscillations of Bose-Einstein condensates: Quantum counterpart of dynamical instability (2009) (39)
- Semiclassical quantization of an N-particle Bose-Hubbard model (2006) (33)
- Complexified coherent states and quantum evolution with non-Hermitian Hamiltonians (2011) (30)
- Mean-field dynamics of a Bose-Einstein condensate in a time-dependent triple-well trap : Nonlinear eigenstates , Landau-Zener models , and stimulated Raman adiabatic passage (2006) (30)
- Classical and quantum dynamics in the (non-Hermitian) Swanson oscillator (2014) (29)
- Bose-Einstein condensates in accelerated double-periodic optical lattices: Coupling and crossing of resonances (2006) (28)
- Kicked Bose–Hubbard systems and kicked tops—destruction and stimulation of tunneling (2007) (25)
- Information Geometry of Complex Hamiltonians and Exceptional Points (2013) (24)
- Coherent states and rational surfaces (2010) (21)
- Six-dimensional space-time from quaternionic quantum mechanics (2011) (15)
- Nonadiabatic transitions through exceptional points in the band structure of a PT -symmetric lattice (2019) (13)
- Towards a Landau-Zener formula for an interacting Bose-Einstein condensate (2006) (13)
- A non-Hermitian PT-symmetric kicked top (2020) (10)
- Bose–Hubbard dimers, Viviani’s windows and pendulum dynamics (2013) (10)
- Lindblad dynamics of Gaussian states and their superpositions in the semiclassical limit (2017) (9)
- Quasiclassical analysis of Bloch oscillations in non-Hermitian tight-binding lattices (2016) (9)
- Random matrix ensembles for PT-symmetric systems (2015) (9)
- Coquaternionic Quantum Dynamics for Two-level Systems (2011) (8)
- PT symmetry dips into two-photon interference (2019) (7)
- Classical-quantum correspondence in bosonic two-mode conversion systems: Polynomial algebras and Kummer shapes (2015) (6)
- Semiclassical quantization for a bosonic atom-molecule conversion system (2015) (5)
- Mean-field approximation for a Bose–Hubbard dimer with complex interaction strength (2013) (5)
- Quantum Chaos on Display (2013) (3)
- Propagation of Gaussian Beams in the Presence of Gain and Loss (2016) (2)
- Landau-Zener transitions through a pair of higher-order exceptional points (2022) (2)
- Bloch oscillations in a Bose–Hubbard chain with single-particle losses (2020) (2)
- The kicked rotor: Computer-based studies of chaotic dynamics (2008) (2)
- Quantum-jump vs stochastic Schrödinger dynamics for Gaussian states with quadratic Hamiltonians and linear Lindbladians (2022) (1)
- Quantum chaos in a non-Hermitian PT-symmetric kicked top (2019) (1)
- Non-Hermitian quantum mechanics and symplectic geometry (2019) (1)
- Breakdown of adiabatic transfer schemes in the presence of decay (2012) (0)
- Semiclassical Husimi distributions for non-Hermitian quantum systems (2022) (0)
- Husimi Dynamics Generated by non-Hermitian Hamiltonians. (2022) (0)
- Quantum signatures of three coalescing eigenfunctions (2011) (0)
- Viewpoint: Quantum Chaos on Display (2013) (0)
- J an 2 01 1 On complexified mechanics and coquaternions (2018) (0)
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What Schools Are Affiliated With Eva-Maria Graefe?
Eva-Maria Graefe is affiliated with the following schools: