An experimental investigation of measurement-induced disturbance and time symmetry in quantum physics
arXiv:1801.04362 · doi:10.1103/PhysRevA.97.042128
Abstract
Unlike regular time evolution governed by the Schrödinger equation, standard quantum measurement appears to violate time-reversal symmetry. Measurement creates random disturbances (e.g., collapse) that prevents back-tracing the quantum state of the system. The effect of these disturbances is explicit in the results of subsequent measurements. In this way, the joint result of sequences of measurements depends on the order in time in which those measurements are performed. One might expect that if the disturbance could be eliminated this time-ordering dependence would vanish. Following a recent theoretical proposal [A. Bednorz et al 2013 New J. Phys. 15 023043], we experimentally investigate this dependence for a kind of measurement that creates an arbitrarily small disturbance, weak measurement. We perform various sequences of a set of polarization weak measurements on photons. We experimentally demonstrate that, although the weak measurements are minimally disturbing, their time-ordering affects the outcome of the measurement sequence for quantum systems.
11 pages, 3 figures
References in corpus (7)
- Experimental joint weak measurement on a photon pair as a probe of Hardy's Paradox
- Weak values and the Leggett-Garg inequality in solid-state qubits
- Inferring causal structure: a quantum advantage
- Sequential weak measurement
- Can a quantum state over time resemble a quantum state at a single time?
- Arrow of Time for Continuous Quantum Measurement
- Anomalous Weak Values and the Violation of a Multiple-measurement Leggett-Garg Inequality
Cited by in corpus (9)
- Experimental simultaneous read out of the real and imaginary parts of the weak value
- Conservation laws in quantum noninvasive measurements
- Markovian and non-Markovian quantum measurements
- Theory and experiment for resource-efficient joint weak-measurement
- Anomalous Weak Values Without Post-Selection
- Determining complementary properties using weak-measurement: uncertainty, predictability, and disturbance
- Neither weak nor strong entropic Leggett-Garg inequalities can be violated
- Second-second moments and two observers testing quantum nonlocality
- Testing time order and Leggett-Garg inequalities with noninvasive measurements on public quantum computers