We consider the use of quantum noise to characterize many-body states of spin systems realized with ultracold atomic systems. These systems offer a wealth of experimental techniques for realizing strongly interacting many-body states in a regime with a large but not macroscopic number of atoms. In this regime, fluctuations of an observable such as the magnetization are discernible compared to the mean value. The full distribution function is experimentally relevant and encodes high order correlation functions that may distinguish various many-body states. We apply quantum noise analysis to the Ising model in a transverse field and find a distinctive even versus odd splitting in the distribution function for the transverse magnetization that...
The quantum Ising model is perhaps the simplest possible model of a quantum magnetic material. Despi...
We theoretically and numerically investigate the spin fluctuations induced in a thermal atomic ensem...
Knowing a quantum system's environment is critical for its practical use as a quantum device. Qubit ...
We observe collective quantum spin states of an ensemble of atoms in a one-dimensional light-atom in...
Spin-noise spectroscopy is emerging as a powerful technique for studying the dynamics of various spi...
Spin-noise spectroscopy is emerging as a powerful technique for studying the dynamics of various spi...
Spin-noise spectroscopy is emerging as a powerful technique for studying the dynamics of various spi...
We analyze how noise correlations probed by time-of-flight experiments reveal antiferromagnetic (AF)...
We extend the covariance matrix description of atom–light quantum interfaces, originally developed f...
We analyze how noise correlations probed by time-of-flight experiments reveal antiferromagnetic (AF)...
This thesis describes quantum measurements of an ensemble of cold rubidium-87 atoms. We extend the ...
We extend the covariance matrix description of atom–light quantum interfaces, originally developed f...
We propose to utilize density-density correlations in the image of an expanding gas cloud to probe c...
This thesis describes quantum measurements of an ensemble of cold rubidium-87 atoms. We extend the ...
We theoretically and numerically investigate the spin fluctuations induced in a thermal atomic ensem...
The quantum Ising model is perhaps the simplest possible model of a quantum magnetic material. Despi...
We theoretically and numerically investigate the spin fluctuations induced in a thermal atomic ensem...
Knowing a quantum system's environment is critical for its practical use as a quantum device. Qubit ...
We observe collective quantum spin states of an ensemble of atoms in a one-dimensional light-atom in...
Spin-noise spectroscopy is emerging as a powerful technique for studying the dynamics of various spi...
Spin-noise spectroscopy is emerging as a powerful technique for studying the dynamics of various spi...
Spin-noise spectroscopy is emerging as a powerful technique for studying the dynamics of various spi...
We analyze how noise correlations probed by time-of-flight experiments reveal antiferromagnetic (AF)...
We extend the covariance matrix description of atom–light quantum interfaces, originally developed f...
We analyze how noise correlations probed by time-of-flight experiments reveal antiferromagnetic (AF)...
This thesis describes quantum measurements of an ensemble of cold rubidium-87 atoms. We extend the ...
We extend the covariance matrix description of atom–light quantum interfaces, originally developed f...
We propose to utilize density-density correlations in the image of an expanding gas cloud to probe c...
This thesis describes quantum measurements of an ensemble of cold rubidium-87 atoms. We extend the ...
We theoretically and numerically investigate the spin fluctuations induced in a thermal atomic ensem...
The quantum Ising model is perhaps the simplest possible model of a quantum magnetic material. Despi...
We theoretically and numerically investigate the spin fluctuations induced in a thermal atomic ensem...
Knowing a quantum system's environment is critical for its practical use as a quantum device. Qubit ...