Characterizing entangled state update in different reference frames with weak measurements
arXiv:2410.20450 · doi:10.1103/PhysRevA.111.022203
Abstract
The evolution of the quantum state of a system upon measurement results in state update. In this work, we investigate the characterization of updated states of multi-partite entangled qubit states with non-destructive weak measurements, involving weakly coupling a pointer to each qubit in a relativistic context. As is well-known, the updated state at intermediate times is frame-dependent, and outcome randomness intrinsic to projective measurements prevents any information to be acquired on the updated state. Here we will see that when weak measurements are implemented there is instead an interplay between randomness and interference, depending on the number of qubits, so as to maintain consistency between descriptions in arbitrary reference frames. Analytical results are given for a small or infinite number of qubits, while for a finite number of qubits we will resort to Monte-Carlo sampling in order to simulate numerically the results of weak measurements. As a by-product, we show how a single-shot measurement of the pointers positions allows to make quantitative predictions on the outcomes that can be obtained for any observable measured on a distant qubit of the multi-partite state.
References in corpus (19)
- Direct Measurement of the Quantum Wavefunction
- Colloquium: Understanding Quantum Weak Values: Basics and Applications
- Quantum Information and Relativity Theory
- General properties of Nonsignaling Theories
- Weak value controversy
- Weak-to-strong transition of quantum measurement in a trapped-ion system
- Complete characterization of post-selected quantum statistics using weak measurement tomography
- Weak values and quantum properties
- Measurements of semi-local and non-maximally entangled states
- Nonlocal Measurements via Quantum Erasure
- How macroscopic properties dictate microscopic probabilities
- Direct Characterization of Quantum Measurements using Weak Values
- Contextuality, Coherences, and Quantum Cheshire Cats
- Do macroscopic properties dictate microscopic probabilities?
- Non-representative quantum mechanical weak values
- Robust Weak Measurements on Finite Samples
- The operational reality of quantum nonlocality
- From observer-dependent facts to frame-dependent measurement records in Wigner friend scenarios
- Multiple measurements on an uncollapsed entangled two-photon state