It is known that a partially entangled state gives improved sensitivity in generalized Ramsey spectroscopy in the presence of decoherence, whereas a maximally entangled state does not. However, it has been an open question whether the known decoherence limit in the improvement is achievable. We show that every spin-squeezed state possesses pairwise entanglement, thereby improving the spectroscopic sensitivity, and that even suboptimal entanglement in its easiest implementation suffices to asymptotically reach the decoherence limit without any measurement optimization
in English and in ItalianInternational audienceSpin-squeezing is a well-established ``quantum techno...
Quantum metrology protocols using entangled states of large spin ensembles attempt to achieve measur...
This paper reviews quantum spin squeezing, which characterizes the sensitivity of a state with respe...
Original article can be found at: http://prola.aps.org/--Copyright American Physical Society DOI : 1...
The generation of entanglement in atomic systems plays a central topic in the fields of quantum info...
Spin squeezing, the generation of collective states of atomic ensembles with reduced spin noise by e...
The optimal precision of frequency measurements in the presence of decoherence is discussed. We anal...
We reformulate definition of spin squeezing and spin coherence in terms of the total variance in spi...
We analyze a model for spin squeezing based on the so-called counter-twisting Hamiltonian, including...
We generate input states with reduced quantum uncertainty (spin-squeezed states) for a hyperfine ato...
Spin squeezing of collective atomic spins can be achieved conditionally via probing with light and s...
Large ensembles of uncorrelated atoms are extensively used as precise sensors of time, rotation, and...
We present criteria to detect the depth of entanglement in macroscopic ensembles of spin-j particles...
Decoherence in a system of two antiferromagnetically coupled spins that interact with a spin bath en...
Abstract -The evolution of an interacting two-component Bose-Einstein condensate from an initial pha...
in English and in ItalianInternational audienceSpin-squeezing is a well-established ``quantum techno...
Quantum metrology protocols using entangled states of large spin ensembles attempt to achieve measur...
This paper reviews quantum spin squeezing, which characterizes the sensitivity of a state with respe...
Original article can be found at: http://prola.aps.org/--Copyright American Physical Society DOI : 1...
The generation of entanglement in atomic systems plays a central topic in the fields of quantum info...
Spin squeezing, the generation of collective states of atomic ensembles with reduced spin noise by e...
The optimal precision of frequency measurements in the presence of decoherence is discussed. We anal...
We reformulate definition of spin squeezing and spin coherence in terms of the total variance in spi...
We analyze a model for spin squeezing based on the so-called counter-twisting Hamiltonian, including...
We generate input states with reduced quantum uncertainty (spin-squeezed states) for a hyperfine ato...
Spin squeezing of collective atomic spins can be achieved conditionally via probing with light and s...
Large ensembles of uncorrelated atoms are extensively used as precise sensors of time, rotation, and...
We present criteria to detect the depth of entanglement in macroscopic ensembles of spin-j particles...
Decoherence in a system of two antiferromagnetically coupled spins that interact with a spin bath en...
Abstract -The evolution of an interacting two-component Bose-Einstein condensate from an initial pha...
in English and in ItalianInternational audienceSpin-squeezing is a well-established ``quantum techno...
Quantum metrology protocols using entangled states of large spin ensembles attempt to achieve measur...
This paper reviews quantum spin squeezing, which characterizes the sensitivity of a state with respe...