Quantum Fisher Information as a Predictor of Decoherence in the Preparation of Spin-Cat States for Quantum Metrology
arXiv:1611.00533 · doi:10.1103/PhysRevA.95.043642
Abstract
In its simplest form, decoherence occurs when a quantum state is entangled with a second state, but the results of measurements made on the second state are not accessible. As the second state has effectively "measured" the first, in this paper we argue that the quantum Fisher information is the relevant metric for predicting and quantifying this kind of decoherence. The quantum Fisher information is usually used to determine an upper bound on how precisely measurements on a state can be used to estimate a classical parameter, and as such it is an important resource. Quantum enhanced metrology aims to create non-classical states with large quantum Fisher information and utilise them in precision measurements. In the process of doing this it is possible for states to undergo decoherence, for instance atom-light interactions used to create coherent superpositions of atomic states may result in atom-light entanglement. Highly non-classical states, such as spin-cat states (Schrödinger cat states constructed from superpositions of collective spins) are shown to be highly susceptible to this kind of decoherence. We also investigate the required field occupation of the second state, such that this decoherence is negligible.
12 pages, 7 figures
References in corpus (26)
- 14-qubit entanglement: creation and coherence
- Nonlinear atom interferometer surpasses classical precision limit
- Quantum metrology from a quantum information science perspective
- Squeezing and entanglement in a Bose-Einstein condensate
- Cavity QED with a Bose-Einstein condensate
- Dynamics and statistical mechanics of ultra-cold Bose gases using c-field techniques
- AC-Stark Shift and Dephasing of a Superconducting Qubit Strongly Coupled to a Cavity Field
- Testing the limits of quantum mechanical superpositions
- Twin matter waves for interferometry beyond the classical limit
- Cryptanalysis of the Hillery-Buzek-Berthiaume quantum secret-sharing protocol
- Fisher information under decoherence in Bloch representation
- Scaling laws for the decay of multiqubit entanglement
- Creation and detection of a mesoscopic gas in a non-local quantum superposition
- Dispersive read-out of ferromagnetic resonance for strongly coupled magnons and microwave photons
- Continuous measurement feedback control of a Bose-Einstein condensate using phase contrast imaging
- Squeezed-light-enhanced atom interferometry below the standard quantum limit
- Paired atom laser beams created via four-wave mixing
- Heterodyne non-demolition measurements on cold atomic samples: towards the preparation of non-classical states for atom interferometry
- Information recycling beam-splitters for atom-interferometry with enhanced sensitivity
- Proposal for the Creation and Optical Detection of Spin Cat States in Bose-Einstein Condensates
- Heisenberg-limited metrology with information recycling
- Creation of macroscopic superposition states from arrays of Bose-Einstein condensates
- Spin-squeezing and Dicke state preparation by heterodyne measurement
- Creation of macroscopic superpositions of flow states with Bose-Einstein condensates
- Heisenberg-limited metrology with a squeezed vacuum state, three-mode mixing, and information recycling
- Generation of mesoscopic superpositions of a binary Bose-Einstein condensate in a slightly asymmetric double well
Cited by in corpus (13)
- Entanglement-enhanced quantum metrology: from standard quantum limit to Heisenberg limit
- Improving cold-atom sensors with quantum entanglement: Prospects and challenges
- Using Interaction-Based Readouts to Approach the Ultimate Limit of Detection Noise Robustness for Quantum-Enhanced Metrology in Collective Spin Systems
- Searching for Signatures of Quantum Gravity in Quantum Gases
- All macroscopic quantum states are fragile and hard to prepare
- Steady-State Force Sensing with Single Trapped Ion
- Generating Macroscopic Superpositions with Interacting Bose-Einstein Condensates: Multi-Mode Speed-Ups and Speed Limits
- Mass-energy equivalence in harmonically trapped particles
- Achieving Heisenberg Scaling on Measurement of A Three-Qubit System via Quantum Error Correction
- Metastable decoherence-free subspace and pointer states in mesoscopic quantum systems
- Light-pulse atom interferometry with entangled atom-optical elements
- Parameter estimation by decoherence in the double-slit experiment
- Quantifying Decoherence