Atomic clocks have reached the Standard Quantum Limit (SQL) of precision,1 set by the projection noise inherent in measurements on uncorrelated atoms. It is possible to overcome this limit by entangling the atoms to generate a "squeezed state" of the atomic ensemble. We use the collective interaction of an atomic ensemble with a far-detuned light field in an optical resonator to prepare squeezed states by two different methods: quantum non-demolition (QND) measurement and Hamiltonian evolution. We apply both methods to an ensemble of 5 x 10[superscript 4] [superscript 87]Rb atoms in a superposition of hyperfine clock states. We measure the suppression of projection noise and compare it to the accompanying reduction in signal, thereby quant...
The generation of entanglement in atomic systems plays a central topic in the fields of quantum info...
Atomic sensors are among the best devices for precision measurements of time, electric and magnetic ...
Atomic clocks known as optical clocks are more accurate and stable than current timekeepers. Two qua...
We generate entangled states of an ensemble of 5×10[superscript 4] [superscript 87]Rb atoms by optic...
We generate input states with reduced quantum uncertainty (spin-squeezed states) for a hyperfine ato...
Large ensembles of uncorrelated atoms are extensively used as precise sensors of time, rotation, and...
Spin squeezing, the generation of collective states of atomic ensembles with reduced spin noise by e...
We investigate theoretically and experimentally a nondestructive interferometric measurement of the ...
For the past decade, the stability of microwave atomic clocks has stood at the standard quantum limi...
Squeezing of collective atomic spins has been shown to improve the sensitivity of atomic clocks and ...
Advances in engineering quantum systems are expected to lead to a new generation of quantum technolo...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2011.This electronic versi...
The generation of entanglement in atomic systems plays a central topic in the fields of quantum info...
We show that the accuracy of atomic interferometry can be improved by using QND measurements of the...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2011.Cataloged from PDF ve...
The generation of entanglement in atomic systems plays a central topic in the fields of quantum info...
Atomic sensors are among the best devices for precision measurements of time, electric and magnetic ...
Atomic clocks known as optical clocks are more accurate and stable than current timekeepers. Two qua...
We generate entangled states of an ensemble of 5×10[superscript 4] [superscript 87]Rb atoms by optic...
We generate input states with reduced quantum uncertainty (spin-squeezed states) for a hyperfine ato...
Large ensembles of uncorrelated atoms are extensively used as precise sensors of time, rotation, and...
Spin squeezing, the generation of collective states of atomic ensembles with reduced spin noise by e...
We investigate theoretically and experimentally a nondestructive interferometric measurement of the ...
For the past decade, the stability of microwave atomic clocks has stood at the standard quantum limi...
Squeezing of collective atomic spins has been shown to improve the sensitivity of atomic clocks and ...
Advances in engineering quantum systems are expected to lead to a new generation of quantum technolo...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2011.This electronic versi...
The generation of entanglement in atomic systems plays a central topic in the fields of quantum info...
We show that the accuracy of atomic interferometry can be improved by using QND measurements of the...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2011.Cataloged from PDF ve...
The generation of entanglement in atomic systems plays a central topic in the fields of quantum info...
Atomic sensors are among the best devices for precision measurements of time, electric and magnetic ...
Atomic clocks known as optical clocks are more accurate and stable than current timekeepers. Two qua...