Tracing quantum correlations back to collective interferences
- URL: http://arxiv.org/abs/2401.16769v2
- Date: Mon, 3 Jun 2024 05:04:10 GMT
- Title: Tracing quantum correlations back to collective interferences
- Authors: Ming Ji, Jonte R. Hance, Holger F. Hofmann,
- Abstract summary: We investigate nonclassical correlations between two quantum systems in terms of quantum interferences between collective states of the two systems.
We show that the relation between probability currents and correlations can be represented by continuous conditional (quasi)probability currents through the interferometer.
Our results help to explain the meaning of nonlocal correlations in quantum mechanics, and support Feynman's claim that interference is the origin of all quantum phenomena.
- Score: 0.04096453902709291
- License: http://arxiv.org/licenses/nonexclusive-distrib/1.0/
- Abstract: In this paper, we investigate the possibility of explaining nonclassical correlations between two quantum systems in terms of quantum interferences between collective states of the two systems. We achieve this by mapping the relations between different measurement contexts in the product Hilbert space of a pair of two-level systems onto an analogous sequence of interferences between paths in a single-particle interferometer. The relations between different measurement outcomes are then traced to the distribution of probability currents in the interferometer, where paradoxical relations between the outcomes are identified with currents connecting two states that are orthogonal and should therefore exclude each other. We show that the relation between probability currents and correlations can be represented by continuous conditional (quasi)probability currents through the interferometer, given by weak values; the violation of the noncontextual assumption is expressed by negative conditional currents in some of the paths. Since negative conditional currents correspond to the assignment of negative conditional probabilities to measurements results in different measurement contexts, the necessity of such negative probability currents represents a failure of noncontextual local realism. Our results help to explain the meaning of nonlocal correlations in quantum mechanics, and support Feynman's claim that interference is the origin of all quantum phenomena.
Related papers
- Breakdown of Measurement-Induced Phase Transitions Under Information Loss [39.36827689390718]
A quantum-many body system can feature measurement-induced phase transitions (MIPTs)
MIPTs cannot be revealed through ensemble-averaged observables, but it requires the ability to discriminate each trajectory separately.
We explore the fate of MIPTs under an observer's reduced ability to discriminate each measurement outcome.
arXiv Detail & Related papers (2024-07-18T18:10:52Z) - Interferometry of quantum correlation functions to access quasiprobability distribution of work [0.0]
We use an interferometric scheme aided by an auxiliary system to reconstruct the Kirkwood-Dirac quasiprobability distribution.
Our results clarify the physical meaning of the work quasiprobability distribution in the context of quantum thermodynamics.
arXiv Detail & Related papers (2024-05-31T17:32:02Z) - Observation of Nonlinear Response and Onsager Regression in a Photon Bose-Einstein Condensate [34.82692226532414]
The quantum regression theorem states that the correlations of a system at two different times are governed by the same equations of motion as the temporal response of the average values.
Here we experimentally demonstrate that the two-time particle number correlations in a photon Bose-Einstein condensate inside a dye-filled microcavity exhibit the same dynamics as the response of the condensate to a sudden perturbation of the dye molecule bath.
This confirms the regression theorem for a quantum gas and, moreover, establishes a test of this relation in an unconventional form where the perturbation acts on the bath and only the condensate response is monitored.
arXiv Detail & Related papers (2024-03-07T17:59:58Z) - Entanglement statistics of randomly interacting spins [62.997667081978825]
Entanglement depends on the underlying topology of the interaction among the qubits.
We investigate the entanglement in the ground state of systems comprising two and three qubits with random interactions.
arXiv Detail & Related papers (2023-07-18T23:58:32Z) - Nonlocal thermoelectric detection of interaction and correlations in
edge states [62.997667081978825]
We propose the nonlocal thermoelectric response as a direct indicator of the presence of interactions, nonthermal states and the effect of correlations.
A setup with two controllable quantum point contacts allows thermoelectricity to monitor the interacting system thermalisation.
arXiv Detail & Related papers (2023-07-18T16:28:59Z) - Quantum Causal Inference with Extremely Light Touch [0.0]
We give an explicit quantum causal inference scheme using quantum observations alone.
We derive a closed-form expression for the space-time pseudo-density matrix associated with many times and qubits.
We prove that if there is no signalling between two subsystems, the associated reduced state of the pseudo-density matrix cannot have negativity.
arXiv Detail & Related papers (2023-03-19T02:59:05Z) - Bell inequalities with overlapping measurements [52.81011822909395]
We study Bell inequalities where measurements of different parties can have overlap.
This allows to accommodate problems in quantum information.
The scenarios considered show an interesting behaviour with respect to Hilbert space dimension, overlap, and symmetry.
arXiv Detail & Related papers (2023-03-03T18:11:05Z) - Measurement-dependent erasure of distinguishability for the observation
of interference in an unbalanced SU(1,1) interferometer [3.2646353020000687]
Quantum interference can disappear with the mere possibility of distinguishability without performing the act.
We create such distinguishability in an unbalanced SU (1,1) interferometer and observe no interference in the direct photodetection of the outputs.
Here, we report a method of homodyne detection that can also recover interference effect.
arXiv Detail & Related papers (2021-09-22T08:39:26Z) - Quantum asymmetry and noisy multi-mode interferometry [55.41644538483948]
Quantum asymmetry is a physical resource which coincides with the amount of coherence between the eigenspaces of a generator.
We show that the asymmetry may emphincrease as a result of a emphdecrease of coherence inside a degenerate subspace.
arXiv Detail & Related papers (2021-07-23T07:30:57Z) - Experimental investigation of the relation between measurement
uncertainties and non-local quantum correlations [0.0]
Bell's inequalities are defined by sums of correlations involving non-commuting observables in each of the two systems.
Violations of Bell's inequalities are only possible because the precision of any joint measurement of these observables will be limited by quantum mechanical uncertainty relations.
arXiv Detail & Related papers (2021-06-02T09:58:38Z) - Predictability, Distinguishability and Entanglement [0.0]
Recent times have seen a spurt of research activity focused on "completing" certain wave-particle duality relations using entanglement or polarization.
Quantum origins of these results are explored here, in the more general framework of multipath quantum interference.
Results of this study show that the two duality relations are quantitatively connected via entanglement.
arXiv Detail & Related papers (2020-11-16T19:00:33Z)
This list is automatically generated from the titles and abstracts of the papers in this site.
This site does not guarantee the quality of this site (including all information) and is not responsible for any consequences.