We demonstrate that releasing atoms into free space from an optical lattice does not deteriorate cavity-generated spin squeezing for metrological purposes. In this work, an ensemble of 500000 spin-squeezed atoms in a high-finesse optical cavity with near-uniform atom-cavity coupling is prepared, released into free space, recaptured in the cavity, and probed. Up to ∼10 dB of metrologically relevant squeezing is retrieved for 700μs free-fall times, and decaying levels of squeezing are realized for up to 3 ms free-fall times. The degradation of squeezing results from loss of atom-cavity coupling homogeneity between the initial squeezed state generation and final collective state readout. A theoretical model is developed to quantify this degrad...
We investigate the generation of entanglement (spin squeezing) in an optical-transition atomic clock...
We study the conditions for generating spin squeezing via a quantum non-demolition measurement in an...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2011.Cataloged from PDF ve...
We demonstrate that releasing atoms into free space from an optical lattice does not deteriorate cav...
We demonstrate that releasing atoms into free space from an optical lattice does not deteriorate cav...
We demonstrate that releasing atoms into free space from an optical lattice does not deteriorate cav...
12 pages, 7 figuresUsing the platform of a trapped-atom clock on a chip, we have generated spin-sque...
12 pages, 7 figuresUsing the platform of a trapped-atom clock on a chip, we have generated spin-sque...
We squeeze unconditionally the collective spin of a dilute ensemble of laser-cooled superscript 87]R...
For the past decade, the stability of microwave atomic clocks has stood at the standard quantum limi...
Spin squeezing, the generation of collective states of atomic ensembles with reduced spin noise by e...
We propose and analyze a simple method to squeeze dynamically and unconditionally the collective spi...
Deterministic light-induced spin squeezing in an atomic gas is limited by photon shot noise or, equi...
Spin squeezing can improve atomic precision measurements beyond the standard quantum limit (SQL), an...
We present and analyze a new approach for the generation of atomic spin-squeezed states. Our method ...
We investigate the generation of entanglement (spin squeezing) in an optical-transition atomic clock...
We study the conditions for generating spin squeezing via a quantum non-demolition measurement in an...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2011.Cataloged from PDF ve...
We demonstrate that releasing atoms into free space from an optical lattice does not deteriorate cav...
We demonstrate that releasing atoms into free space from an optical lattice does not deteriorate cav...
We demonstrate that releasing atoms into free space from an optical lattice does not deteriorate cav...
12 pages, 7 figuresUsing the platform of a trapped-atom clock on a chip, we have generated spin-sque...
12 pages, 7 figuresUsing the platform of a trapped-atom clock on a chip, we have generated spin-sque...
We squeeze unconditionally the collective spin of a dilute ensemble of laser-cooled superscript 87]R...
For the past decade, the stability of microwave atomic clocks has stood at the standard quantum limi...
Spin squeezing, the generation of collective states of atomic ensembles with reduced spin noise by e...
We propose and analyze a simple method to squeeze dynamically and unconditionally the collective spi...
Deterministic light-induced spin squeezing in an atomic gas is limited by photon shot noise or, equi...
Spin squeezing can improve atomic precision measurements beyond the standard quantum limit (SQL), an...
We present and analyze a new approach for the generation of atomic spin-squeezed states. Our method ...
We investigate the generation of entanglement (spin squeezing) in an optical-transition atomic clock...
We study the conditions for generating spin squeezing via a quantum non-demolition measurement in an...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2011.Cataloged from PDF ve...