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Markus K. Oberthaler
Professor
Heidelberg University
Interests
Cold Atoms
Quantum Simulation
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Entanglement
BEC machine
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Ultracold gases: Experiment
High signal to noise absorption imaging of alkali atoms at moderate magnetic fields
Pulsed production of antihydrogen
Experimentalphysik III
Collisions of Three-Component Vector Solitons in Bose-Einstein Condensates
Information theory and quantum physics
Experimental extraction of the quantum effective action for a non-equilibrium many-body system
A scalable realization of local U(1) gauge invariance in cold atomic mixtures
Stability analysis of ground states in a one-dimensional trapped spin-1 Bose gas
Simultaneous Readout of Noncommuting Collective Spin Observables beyond the Standard Quantum Limit
Dating glacier ice of the last millennium by quantum technology
Bidirectional universal dynamics in a spinor Bose gas close to a nonthermal fixed point
Ar-39 dating with small samples provides new key constraints on ocean ventilation
Observation of universal dynamics in a spinor Bose gas far from equilibrium
Quenches near criticality of the quantum Ising chain—power and limitations of the discrete truncated Wigner approximation
Quantum metrology with nonclassical states of atomic ensembles
Quantum simulation of lattice gauge theories using Wilson fermions
Spatially distributed multipartite entanglement enables EPR steering of atomic clouds
Active SU(1,1) atom interferometry
Universal equilibrium scaling functions at short times after a quench
Implementing quantum electrodynamics with ultracold atomic systems
Bichromatic force on metastable argon for atom-trap trace analysis
Experimental observation of the Poincaré-Birkhoff scenario in a driven many-body quantum system
Quantum-Enhanced Sensing Based on Time Reversal of Nonlinear Dynamics
Observation of the phononic Lamb shift with a synthetic vacuum
Observation of Scaling in the Dynamics of a Strongly Quenched Quantum Gas
Nonlinear dressed states at the miscibility-immiscibility threshold
Twist-and-turn spin squeezing in Bose-Einstein condensates
Double-well atom trap for fluorescence detection at the Heisenberg limit
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