output
20042013
most citedPhotonic Boson Sampling in a Tunable Circuit

652 citations

Showing 2010Show all

6 papers · 1 filter

cond-mat.quant-gas201029 cited

Many-body physics in the classical-field description of a degenerate Bose gas

T. M. Wright, N. P. Proukakis, M. J. Davis

The classical-field formalism has been widely applied in the calculation of normal correlation functions, and the characterization of condensation, in finite-temperature Bose gases…

quant-ph201049 cited

Hardy's paradox and violation of a state-independent Bell inequality in time

Alessandro Fedrizzi, Marcelo P. Almeida, Matthew A. Broome +2

Tests such as Bell's inequality and Hardy's paradox show that joint probabilities and correlations between distant particles in quantum mechanics are inconsistent with local realis…

cond-mat.quant-gas201034 cited

Growth dynamics of a Bose-Einstein condensate in a dimple trap without cooling

Michael C. Garrett, Adrian Ratnapala, Eikbert D. van Ooijen +7

We study the formation of a Bose-Einstein condensate in a cigar-shaped three-dimensional harmonic trap, induced by the controlled addition of an attractive "dimple" potential along…

quant-ph201014 cited

Statistical dynamics of a non-Abelian anyonic quantum walk

Lauri Lehman, Vaclav Zatloukal, Gavin K. Brennen +2

We study the single particle dynamics of a mobile non-Abelian anyon hopping around many pinned anyons on a surface. The dynamics is modelled by a discrete time quantum walk and the…

cond-mat.quant-gas201074 cited

Sub-Poissonian number differences in four-wave mixing of matter waves

Jean-Christophe Jaskula, Marie Bonneau, Guthrie B. Partridge +6

We demonstrate sub-Poissonian number differences in four-wave mixing of Bose-Einstein condensates of metastable helium. The collision between two Bose-Einstein condensates produces…

quant-ph2010126 cited

Entanglement between the future and past in the quantum vacuum

S. Jay Olson, Timothy C. Ralph

We note that massless fields within the future and past light cone may be quantized as independent systems. We show that the vacuum is an entangled state of these systems, exactly…