| related words |
| susceptibility |
| instabilities |
| condensation |
| cloud |
| inversely |
| rayleigh |
| enhancement |
| probes |
| stringari |
| intense |
| laboratoire |
| neglecting |
| boseeinstein |
| friction |
| noises |
| fluctuation |
| instability |
| helium |
| pitaevskii |
| sodium |
|
| related documents |
| Quantum Langevin Equations and Stability [9801072v1] |
| Nonclassical statistics of intracavity coupled $\chi^{(2)}$ waveguides:
the quantum optical dimer [0205029v2] |
| Full mechanical characterization of a cold damped mirror [0008004v1] |
| The AC Stark, Stern-Gerlach, and Quantum Zeno Effects in Interferometric
Qubit Readout [9612001v1] |
| Coherence and Fluctuations in the Interaction between Moving Atoms and a
Quantum Field [9710061v1] |
| Classical Dynamics for Linear Systems: The Case of Quantum Brownian
Motion [9507011v1] |
| Squeezing and entanglement delay using slow light [0409183v3] |
| Polarization squeezing in vertical-cavity surface-emitting lasers [0407006v1] |
| Quantum optical implementation of quantum information processing [0405030v1] |
| Quantum-Liouville and Langevin Equations for Gravitational Radiation
Damping [0101006v1] |
| A Quantum Langevin Formulation of Risk-Sensitive Optimal Control [0412091v2] |
| Field quantization for open optical cavities [0203122v2] |
| Macroscopic mechanical oscillators at the quantum limit using
optomechanical cooling [0211102v1] |
| First principles quantum Monte Carlo [0510047v2] |
| Variational Principle for Mixed Classical-Quantum Systems [0610011v2] |
| Non-Markovian quantum feedback from homodyne measurements: the effect of
a non-zero feedback delay time [9902077v1] |
| Input-output relations at dispersing and absorbing planar multilayers
for the quantized electromagnetic field containing evanescent components [0303021v1] |
| Optomechanical entanglement between a movable mirror and a cavity field [0609197v2] |
| Tightly Localized Stationary Pulses in Multi-Level Atomic System [0606051v4] |
| Fault-tolerant quantum repeaters with minimal physical resources, and
implementations based on single photon emitters [0502112v1] |
|
| related topics |
| {temperature, thermal, energy} |
| {light, field, probe} |
| {cavity, atom, atoms} |
| {energy, gaussian, time} |
| {state, states, coherent} |
| {state, phys, rev} |
| {measurement, state, measurements} |
| {level, atom, field} |
| {states, state, optimal} |
| {let, theorem, proof} |
| {force, casimir, field} |
| {equation, function, exp} |
| {field, particle, equation} |
| {qubit, qubits, gate} |
| {time, decoherence, evolution} |
| {operator, operators, space} |
| {bell, inequality, local} |
| {information, entropy, channel} |
| {trap, ion, state} |
| {classical, space, random} |
|