Multiparameter cascaded quantum interferometer
- URL: http://arxiv.org/abs/2404.07509v3
- Date: Sat, 16 Nov 2024 02:54:32 GMT
- Title: Multiparameter cascaded quantum interferometer
- Authors: Baihong Li, Qi-qi Li, Zhuo-zhuo Wang, Penglong Wang, Changhua Chen, Boxin Yuan, Yiwei Zhai, Xiaofei Zhang,
- Abstract summary: A general method for deriving the coincidence probability of such an interferometer is given based on the linear transformation of the matrix of beam splitters.
This work offers a general theoretical framework for designing versatile quantum interferometers.
Potential applications can be found in the complete spectral characterization of two-photon states.
- Score: 1.8810162003102153
- License:
- Abstract: We theoretically propose a multiparameter cascaded quantum interferometer in which a two-input and two-output setup is obtained by concatenating 50:50 beam splitters with $n$ independent and adjustable time delays. A general method for deriving the coincidence probability of such an interferometer is given based on the linear transformation of the matrix of beam splitters. As examples, we analyze the interference characteristics of one-, two- and three-parameter cascaded quantum interferometers with different frequency correlations and input states. Some typical interferograms of such interferometers are provided to reveal richer and more complicated two-photon interference phenomena. This work offers a general theoretical framework for designing versatile quantum interferometers and provides a convenient method for deriving the coincidence probabilities involved. In principle, arbitrary two-input and two-output experimental setups can be designed with the framework. Potential applications can be found in the complete spectral characterization of two-photon states, multiparameter estimation, and quantum metrology.
Related papers
- Multi-parameter estimation of the state of two interfering photonic qubits [0.0]
It is demonstrated a two-photon interfering technique based on polarization-resolved measurements for the simultaneous estimation.
We show the experimental feasibility and accuracy of this technique even when a limited number of sampling measurements is employed.
arXiv Detail & Related papers (2024-05-21T15:38:28Z) - Manipulating multiple optical parametric processes in photonic
topological insulators [6.655289256837963]
We show two distinct edge modes corresponding to different frequency ranges in both sandwich kagome and honeycomb topological designs.
These two topological edge modes enable two types of optical parametric processes through four-wave mixing.
The devices emulating photonic valley-Hall insulators allow the frequency division of two transverse modes.
arXiv Detail & Related papers (2024-01-12T07:29:36Z) - Hyper-entanglement between pulse modes and frequency bins [101.18253437732933]
Hyper-entanglement between two or more photonic degrees of freedom (DOF) can enhance and enable new quantum protocols.
We demonstrate the generation of photon pairs hyper-entangled between pulse modes and frequency bins.
arXiv Detail & Related papers (2023-04-24T15:43:08Z) - Variational waveguide QED simulators [58.720142291102135]
Waveguide QED simulators are made by quantum emitters interacting with one-dimensional photonic band-gap materials.
Here, we demonstrate how these interactions can be a resource to develop more efficient variational quantum algorithms.
arXiv Detail & Related papers (2023-02-03T18:55:08Z) - Interferometry and higher-dimensional phase measurements using
directionally unbiased linear optics [62.997667081978825]
Grover multiports are higher-dimensional generalizations of beam splitters.
In this paper, we demonstrate that interferometers built from such multiports have novel features.
arXiv Detail & Related papers (2022-09-20T02:18:13Z) - Tunable photon-mediated interactions between spin-1 systems [68.8204255655161]
We show how to harness multi-level emitters with several optical transitions to engineer photon-mediated interactions between effective spin-1 systems.
Our results expand the quantum simulation toolbox available in cavity QED and quantum nanophotonic setups.
arXiv Detail & Related papers (2022-06-03T14:52:34Z) - Exploring quantum correlations in a hybrid optomechanical system [0.0]
We propose a scheme of two coupled optomechanical cavities to enhance the intracavity entanglement.
Photon hopping is employed to establish couplings between optical modes, while phonon is utilized to establish couplings between mechanical tunneling resonators.
arXiv Detail & Related papers (2022-04-16T08:47:50Z) - Interferometry based on quantum Kibble-Zurek mechanism [5.309487306193579]
We propose an interferometry within the framework of quantum Kibble-Zurek mechanism.
We show that an interference can arise from the interplay between two different critical dynamics derived from a critical point and a tricritical point.
arXiv Detail & Related papers (2022-04-04T10:52:24Z) - Two-colour spectrally multimode integrated SU(1,1) interferometer [77.34726150561087]
We develop and investigate an integrated multimode two-colour SU (1,1) interferometer that operates in a supersensitive mode.
By ensuring a proper design of the integrated platform, we suppress dispersion and thereby significantly increase the visibility of the interference pattern.
We demonstrate that such an interferometer overcomes the classical phase sensitivity limit for wide parametric gain ranges, when up to $3*104$ photons are generated.
arXiv Detail & Related papers (2022-02-10T13:30:42Z) - 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) - Quantum Entangled Interferometers [0.348097307252416]
A new type of quantum entangled interferometer was recently realized that employs parametric amplifiers as the wave splitting and recombination elements.
The quantum entanglement stems from the parametric amplifiers, which produce quantum correlated fields for probing the phase change signal in the interferometer.
arXiv Detail & Related papers (2020-04-26T20:14:22Z)
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.