Noninvasiveness and time symmetry of weak measurements
arXiv:1108.1305 · doi:10.1088/1367-2630/15/2/023043
Abstract
Measurements in classical and quantum physics are described in fundamentally different ways. Nevertheless, one can formally define similar measurement procedures with respect to the disturbance they cause. Obviously, strong measurements, both classical and quantum, are invasive -- they disturb the measured system. We show that it is possible to define general weak measurements, which are noninvasive: the disturbance becomes negligible as the measurement strength goes to zero. Classical intuition suggests that noninvasive measurements should be time symmetric (if the system dynamics is reversible) and we confirm that correlations are time-reversal symmetric in the classical case. However, quantum weak measurements -- defined analogously to their classical counterparts -- can be noninvasive but not time symmetric. We present a simple example of measurements on a two-level system which violates time symmetry and propose an experiment with quantum dots to measure the time-symmetry violation in a third-order current correlation function.
19 pages, 5 figures, more information at http://www.fuw.edu.pl/~abednorz/tasym/
References in corpus (10)
- Direct Measurement of the Quantum Wavefunction
- Weak values and the Leggett-Garg inequality in solid-state qubits
- Conditional statistics of electron transport in interacting nanoscale conductors
- Signatures of quantum behavior in single-qubit weak measurements
- Detection of non-Gaussian Fluctuations in a Quantum Point Contact
- Quasiprobabilistic Interpretation of Weak measurements in Mesoscopic Junctions
- Commuting Heisenberg operators as the quantum response problem: Time-normal averages in the truncated Wigner representation
- High Frequency Dynamics and Third Cumulant of Quantum Noise
- Full Counting Statistics for Number of Electrons Dwelling in a Quantum Dot
- Optimal waveform estimation for classical and quantum systems via time-symmetric smoothing
Cited by in corpus (20)
- Arrow of Time for Continuous Quantum Measurement
- Experimental simultaneous read out of the real and imaginary parts of the weak value
- Conservation laws in quantum noninvasive measurements
- An experimental investigation of measurement-induced disturbance and time symmetry in quantum physics
- Anomalous Weak Values Without Post-Selection
- Landau-Zener evolution under weak measurement: Manifestation of the Zeno effect under diabatic and adiabatic measurement protocols
- Time reversal symmetry of generalized quantum measurements with past and future boundary conditions
- Relativistic invariance of the vacuum
- Objective realism and freedom of choice in relativistic quantum field theory
- Yet another time about time - Part I
- Detection of quantum interference without interference
- Anomalous weak values are caused by disturbance
- General quantum measurements in relativistic quantum field theory
- Quantum Objective Realism
- Quantum causality relations and the emergence of reality from coherent superpositions
- Proposal for a clumsiness-free test of macroscopic realism
- Effect of relativity and vacuum fluctuations on quantum measurement
- Nonclassical correlations in decaying systems
- On the dynamics between gravity and entanglement
- Testing time order and Leggett-Garg inequalities with noninvasive measurements on public quantum computers