Experimental evidence for the physical delocalization of individual photons in an interferometer
- URL: http://arxiv.org/abs/2505.00336v1
- Date: Thu, 01 May 2025 06:20:46 GMT
- Title: Experimental evidence for the physical delocalization of individual photons in an interferometer
- Authors: Ryuya Fukuda, Masataka Iinuma, Yuto Matsumoto, Holger F. Hofmann,
- Abstract summary: We quantify the delocalization of individual photons using the rate of polarization flips induced by small rotations of polarization.<n>We can thus confirm that delocalization depends on the detection of photons in the output of the interferometer.
- Score: 0.0
- License: http://arxiv.org/licenses/nonexclusive-distrib/1.0/
- Abstract: It is generally assumed that the detection of a single photon as part of an interference pattern erases all possible which-path information. However, recent insights suggest that weak interactions can provide non-trivial experimental evidence for the physical delocalization of a single particle passing through an interferometer. Here, we present an experimental setup that can quantify the delocalization of individual photons using the rate of polarization flips induced by small rotations of polarization. The results show that photons detected in equal superpositions of the two paths are delocalized when detected in a high probability output port, and "super-localized" when detected in a low probability output port. We can thus confirm that delocalization depends on the detection of photons in the output of the interferometer, providing direct experimental evidence for the dependence of physical reality on the context established by a future measurement.
Related papers
- Entanglement-induced collective many-body interference [62.22849132943891]
We propose an interferometric setting through which N-particle interference can be observed, while any interference of lower orders is strictly suppressed.
We experimentally demonstrate this effect in a four-photon interferometer, where the interference is nonlocal, in principle.
A joint detection of all four photons identifies a high-visibility interference pattern varying as a function of their collective four-particle phase, a genuine four-body property.
arXiv Detail & Related papers (2023-10-12T18:00:02Z) - A coherence interpretation of nonlocal realism in the delayed-choice
quantum eraser [0.0]
A coherence interpretation is conducted for the nonlocal realism of the space-like separated photons observed in Phys. Rev. Lett. 84, 1 (2000).
A fixed sum-phase relation between entangled photons is a prerequisite, which cannot be explained by conventional particle nature-based quantum mechanics.
arXiv Detail & Related papers (2023-02-27T02:13:00Z) - Entanglement of annihilation photons [141.5628276096321]
We present the results of a new experimental study of the quantum entanglement of photon pairs produced in positron-electron annihilation at rest.
Despite numerous measurements, there is still no experimental proof of the entanglement of photons.
arXiv Detail & Related papers (2022-10-14T08:21:55Z) - Linear and angular momenta of photons in the context of "which path"
experiments of quantum mechanics [0.0]
This paper examines the arguments that relate the photon momenta to the "which path" question at the heart of quantum mechanics.
We show that the linear momenta imparted to apertures or mirrors, or the angular momenta picked up by strategically placed wave-plates, could lead to an identification of the photon's path only at the expense of destroying the corresponding interference effects.
arXiv Detail & Related papers (2022-10-04T20:27:45Z) - Wave nature-based nonlocal correlation via projection measurements
between space-like separated interferometric systems [0.0]
A macroscopic version of the delayed-choice experiments has been demonstrated using the classical means of Poisson distributed photons in a noninterfering Mach-Zehnder interferometer (NMZI)
Indistinguishability limited to a single or entangled photon pairs needs to be reconsidered with basis (polarization) randomness for the nonlocal correlation.
arXiv Detail & Related papers (2022-02-23T05:51:23Z) - Quantifying the presence of a neutron in the paths of an interferometer [1.4680035572775534]
We experimentally investigate the possibility that an individual neutron moving through a two-path interferometer may actually be physically distributed between the two paths.
Results show that individual particles experience a specific fraction of the magnetic field applied in one of the paths, indicating that a fraction or even a multiple of the particle was present in the path before the interference of the two paths was registered.
arXiv Detail & Related papers (2022-02-01T08:21:54Z) - Two-point measurement of entropy production from the outcomes of a
single experiment with correlated photon pairs [0.0]
We provide an experimental demonstration of a quantum fluctuation theorem where the distribution of entropy production is obtained directly from the outcomes of an optical experiment.
The setup consists of entangled photon pairs, one of which is sent an interferometer emulating a finite temperature amplitude damping device.
arXiv Detail & Related papers (2021-08-06T20:24:17Z) - Tunable Anderson Localization of Dark States [146.2730735143614]
We experimentally study Anderson localization in a superconducting waveguide quantum electrodynamics system.
We observe an exponential suppression of the transmission coefficient in the vicinity of its subradiant dark modes.
The experiment opens the door to the study of various localization phenomena on a new platform.
arXiv Detail & Related papers (2021-05-25T07:52:52Z) - Observation-dependent suppression and enhancement of two-photon
coincidences by tailored losses [68.8204255655161]
Hong-Ou-Mandel (HOM) effect can lead to a perfect suppression of two-particle coincidences between the output ports of a balanced beam splitter.
In this work, we demonstrate experimentally that the two-particle coincidence statistics of two bosons can instead be seamlessly tuned to substantial enhancement.
Our findings reveal a new approach to harnessing non-Hermitian settings for the manipulation of multi-particle quantum states.
arXiv Detail & Related papers (2021-05-12T06:47:35Z) - Towards probing for hypercomplex quantum mechanics in a waveguide
interferometer [55.41644538483948]
We experimentally investigate the suitability of a multi-path waveguide interferometer with mechanical shutters for performing a test for hypercomplex quantum mechanics.
We systematically analyse the influence of experimental imperfections that could lead to a false-positive test result.
arXiv Detail & Related papers (2021-04-23T13:20:07Z) - Investigating the coherent state detection probability of InGaAs/InP
SPAD-based single-photon detectors [55.41644538483948]
We investigate the probabilities of detecting single- and multi-photon coherent states on InGaAs/InP sine-gated and free-run avalanche diodes.
We conclude that multi-photon state detection cannot be regarded as independent events of absorption of individual single-photon states.
arXiv Detail & Related papers (2021-04-16T08:08:48Z) - Wave-particle duality using the Compton effect [0.0]
We study the consequences of the beam-splitter recoil, during the passage of the photon, over the interference pattern produced by the device.
Fortuitously, the model used to describe the interaction between the idealized beam-splitter and the photon clearly indicates that an interferometer based on Compton's effect could be build to study wave-particle duality.
arXiv Detail & Related papers (2020-05-06T16:23:56Z)
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.