Science · 2012 · 111 citations · 26 references
Quantum PhotonicsEngineeringCavity QedThermal RadiationRefrigerationOptical CavitiesUltracold AtomThermodynamicsConventional LaserCavity CoolingQuantum OpticsAccelerator TechnologyQuantum SciencePhotonicsPhysicsAtomic PhysicsHeat TransferBose-einstein CondensationConventional Laser CoolingQuantum OpticNatural SciencesCryogenicsApplied PhysicsThermal Engineering
Conventional laser cooling relies on repeated electronic excitations by near-resonant light, which constrains its area of application to a selected number of atomic species prepared at moderate particle densities. Optical cavities with sufficiently large Purcell factors allow for laser cooling schemes, avoiding these limitations. Here, we report on an atom-cavity system, combining a Purcell factor above 40 with a cavity bandwidth below the recoil frequency associated with the kinetic energy transfer in a single photon scattering event. This lets us access a yet-unexplored regime of atom-cavity interactions, in which the atomic motion can be manipulated by targeted dissipation with sub-recoil resolution. We demonstrate cavity-induced heating of a Bose-Einstein condensate and subsequent cooling at particle densities and temperatures incompatible with conventional laser cooling.
26
Many-body physics with ultracold gases
Immanuel Bloch, Jean Dalibard, W. Zwerger · Reviews of Modern Physics · 2008 · 7.9K citations · Full text
Resonance Absorption by Nuclear Magnetic Moments in a Solid
Edward M. Purcell, H. C. Torrey, R. V. Pound · Physical Review · 1946 · 5.8K citations · Full text
Theory of Bose-Einstein condensation in trapped gases
F. Dalfovo, S. Giorgini, S. Stringari · Reviews of Modern Physics · 1999 · 5.5K citations · Full text
Th. Udem, Ronald Holzwarth, Theodor W. Hänsch · Nature · 2002 · 3K citations
Cavity Optomechanics: Back-Action at the Mesoscale
Tobias J. Kippenberg, Kerry J. Vahala · Science · 2008 · 1.9K citations · Full text