Efficient Spin Squeezing with Optimized Pulse Sequences
arXiv:1304.3532 · doi:10.1103/PhysRevA.87.051801
Abstract
Spin squeezed states are a class of entangled states of spins that have practical applications to precision measurements. In recent years spin squeezing with one-axis twisting (OAT) has been demonstrated experimentally with spinor BECs with more than 10^3 atoms. Although the noise is below the standard quantum limit, the OAT scheme cannot reduce the noise down to the ultimate Heisenberg limit. Here we propose an experimentally feasible scheme based on optimized quantum control to greatly enhance the performance of OAT to approach the Heisenberg limit, requiring only an OAT Hamiltonian and the use of several coherent driving pulses. The scheme is robust against technical noise and can be readily implemented for spinor BECs or trapped ions with current technology.
4 pages, 6 figures
References in corpus (7)
- Scalable multi-particle entanglement of trapped ions
- Nonlinear atom interferometer surpasses classical precision limit
- Engineered 2D Ising interactions on a trapped-ion quantum simulator with hundreds of spins
- Spin squeezing and entanglement
- Spin squeezing of a cold atomic ensemble with the nuclear spin of one-half
- Spin squeezing: transforming one-axis-twisting into two-axis-twisting
- Quantum Control of the Hyperfine Spin of a Cs Atom Ensemble
Cited by in corpus (25)
- Spin squeezing in a Rydberg lattice clock
- Variational spin-squeezing algorithms on programmable quantum sensors
- An information theoretical analysis of quantum optimal control
- Entanglement-enhanced quantum metrology: from standard quantum limit to Heisenberg limit
- Robust entanglement-based magnetic field sensor beyond the standard quantum limit
- Driven-Dissipative Quantum Dynamics in Ultra Long-lived Dipoles in an Optical Cavity
- Fast Generation of GHZ-like States Using Collective-Spin XYZ Model
- Vacuum spin squeezing
- Spin squeezing by tensor twisting and Lipkin-Meshkov-Glick dynamics in a toroidal Bose-Einstein condensate with spatially modulated nonlinearity
- Two-axis spin squeezing of two-component BEC via a continuous driving
- Noise-resistant optimal spin squeezing via quantum control
- A hybrid-systems approach to spin squeezing using a highly dissipative ancillary system
- Extreme Spin Squeezing from Deep Reinforcement Learning
- Dynamical Spin Squeezing via Higher Order Trotter-Suzuki Approximation
- Spin squeezing of the non-Hermitian one-axis twisting model
- Creating a tunable spin squeezing via a time-dependent collective atom-photon coupling
- Counterdiabatic driving in spin squeezing and Dicke state preparation
- Optimal Conventional Measurements for Quantum-Enhanced Interferometry
- Heisenberg-limited spin squeezing in coupled spin systems
- Nuclear spin squeezing via electric quadrupole interaction
- Spin squeezing via one- and two-axis twisting induced by a single off-resonance stimulated Raman scattering in a cavity
- Suppressing nonadiabatic transitions during adiabatic generation of highly entangled states in bosonic Josephson junctions
- Preparing spin-squeezed states in Rydberg atom arrays via quantum optimal control
- Two-axis spin squeezing in two cavities
- Generation of spin-squeezed states using dipole-coupled spins