Phase transitions in sequential weak measurements
arXiv:1711.02482 · doi:10.1103/PhysRevA.98.012117
Abstract
Quantum measurements and phase transitions are seemingly uncorrelated topics, but here we show that phase transitions occur in sequential quantum measurements. We find that the probability distribution of the measurement results of a sequence of quantum measurements on a two-level system (e.g. a qubit) is equivalent to the Boltzmann distribution of a classical lattice spin model. So the measurement results present phase transitions similar to those in the lattice spin model. In sequential commuting positive-operator valued measurements, the probability distribution is mapped to a long-range Ising model in the weak-measurement regime, and a projective measurement emerges from a sequence of weak measurement when the strength or the number of measurements becomes above certain critical values, which correspond to a second-order ferromagnetic phase transition of the lattice spin model. These findings not only provide new insights on sequential quantum measurements, but may also have potential applications in quantum technologies.
19 pages,4 figures
References in corpus (7)
- Single-shot read-out of an individual electron spin in a quantum dot
- A Straightforward Introduction to Continuous Quantum Measurement
- Qubit feedback and control with kicked quantum nondemolition measurements: A quantum Bayesian analysis
- Single-Shot Readout of a Nuclear Spin Weakly Coupled to a Nitrogen-Vacancy Center
- Sequential projective measurements for channel decoding
- The information about the state of a qubit gained by a weakly coupled detector
- Quantum Typicality and Initial Conditions
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