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arxiv: 1709.04531 · v2 · pith:DMIAEH53new · submitted 2017-09-13 · ⚛️ physics.atom-ph · cond-mat.quant-gas· quant-ph

Negative-mass instability of the spin and motion of an atomic gas driven by optical cavity backaction

classification ⚛️ physics.atom-ph cond-mat.quant-gasquant-ph
keywords cavitymotionnegative-massspinatomiccollectivecouplingdriven
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We realize a spin-orbit interaction between the collective spin precession and center-of-mass motion of a trapped ultracold atomic gas, mediated by spin- and position-dependent dispersive coupling to a driven optical cavity. The collective spin, precessing near its highest-energy state in an applied magnetic field, can be approximated as a negative-mass harmonic oscillator. When the Larmor precession and mechanical motion are nearly resonant, cavity mediated coupling leads to a negative-mass instability, driving exponential growth of a correlated mode of the hybrid system. We observe this growth imprinted on modulations of the cavity field and estimate the full covariance of the resulting two-mode state by observing its transient decay during subsequent free evolution.

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