activity
20052008
most citedSelf-organization of atoms in a cavity field: threshold, bistability and scaling laws

117 citations · 310 across the 5 of their papers we have counts for

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6 papers · 1 filter

quant-ph200820 cited

Cavity nonlinear optics with few photons and ultracold quantum particles

András Vukics, Wolfgang Niedenzu, Helmut Ritsch

The light force on particles trapped in the field of a high-Q cavity mode depends on the quantum state of field and particle. Different photon numbers generate different optical po…

quant-ph200781 cited

Prospects for the cavity-assisted laser cooling of molecules

Benjamin L. Lev, Andras Vukics, Eric R. Hudson +4

Cooling of molecules via free-space dissipative scattering of photons is thought not to be practicable due to the inherently large number of Raman loss channels available to molecu…

quant-ph200752 cited

Microscopic physics of quantum self-organisation of optical lattices in cavities

András Vukics, Christoph Maschler, Helmut Ritsch

We study quantum particles at zero temperature in an optical lattice coupled to a resonant cavity mode. The cavity field substantially modifies the particle dynamics in the lattice…

quant-ph200740 cited

C++QED: An object-oriented framework for wave-function simulations of cavity QED systems

A. Vukics, H. Ritsch

We present a framework for efficiently performing Monte Carlo wave-function simulations in cavity QED with moving particles. It relies heavily on the object-oriented programming pa…

quant-ph2005

Entanglement driven self-organization via a quantum seesaw mechanism

Christoph Maschler, Helmut Ritsch, Andras Vukics +1

Atom-field entanglement is shown to play a crucial role for the onset of spatial self-organization of ultracold atoms in an optical lattice within a high-Q cavity. Like particles o…

quant-ph2005117 cited

Self-organization of atoms in a cavity field: threshold, bistability and scaling laws

J. K. Asboth, P. Domokos, H. Ritsch +1

We present a detailed study of the spatial self-organization of laser-driven atoms in an optical cavity, an effect predicted on the basis of numerical simulations [P. Domokos and H…