Resonant squeezed light from photonic Cooper pairs
- URL: http://arxiv.org/abs/2310.07139v3
- Date: Fri, 21 Jun 2024 19:52:30 GMT
- Title: Resonant squeezed light from photonic Cooper pairs
- Authors: Sanker Timsina, Taha Hammadia, Sahar Gholami Milani, Filomeno S. de Aguiar Júnior, Alexandre Brolo, Rogério de Sousa,
- Abstract summary: Raman scattering of photons into phonons gives rise to entangled photon pairs when the phonon emitted in a Stokes process is coherently absorbed in antiStokes scattering.
We present a nonperturbative theory for the time evolution of photonic Cooper pairs.
- Score: 37.69303106863453
- License: http://creativecommons.org/licenses/by/4.0/
- Abstract: Raman scattering of photons into phonons gives rise to entangled photon pairs when the phonon emitted in a Stokes process is coherently absorbed in antiStokes scattering, forming the photonic analog of Cooper pairs. We present a nonperturbative theory for the time evolution of photonic Cooper pairs that treats interacting photons and phonons as a hybrid excitation, the Ramaniton. As the Ramaniton propagates in a wave guide it displays quantum oscillations between photon and phonon occupation, leading to resonant squeezed Stokes-antiStokes light when the phonon occupation becomes equal to zero without recurring back to the photon vacuum. This phenomenon is predicted to generate up to 28 dB of squeezed light even in standard silicon on insulator waveguides.
Related papers
- Spontaneous superradiant photon current [3.9142816997810743]
This work reports the spontaneous emergence of a photon current in a class of spin-cavity systems.
Specifically, photons in a superradiant phase afforded by coherent photon-emitter interaction spontaneously flow from a cavity.
arXiv Detail & Related papers (2024-02-23T07:57:40Z) - Quantum vortices of strongly interacting photons [52.131490211964014]
Vortices are hallmark of nontrivial dynamics in nonlinear physics.
We report on the realization of quantum vortices resulting from a strong photon-photon interaction in a quantum nonlinear optical medium.
For three photons, the formation of vortex lines and a central vortex ring attests to a genuine three-photon interaction.
arXiv Detail & Related papers (2023-02-12T18:11:04Z) - Entangled Photons and Phonons via Inter-Modal Brillouin Scattering [0.0]
We explore the possibility of the formation of photon-phonon entangled states in nanoscale wires by exploiting stimulated inter-modal Brillouin scattering.
The appearance of entangled states can extend the use of nanowires, for example, those made of silicon, into quantum information processing.
arXiv Detail & Related papers (2022-12-16T07:40:59Z) - 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) - Two-photon emission in detuned resonance fluorescence [0.0]
We discuss two-photon correlations from the side peaks that are formed when a two-level system emitter is driven coherently.
We show that their combination leads to a neat picture compatible with perturbative two-photon scattering.
This should help to control, enhance and open new regimes of multiphoton emission.
arXiv Detail & Related papers (2022-10-07T17:59:38Z) - Correlations between cascaded photons from spatially localized
biexcitons in ZnSe [55.41644538483948]
We demonstrate a radiative cascade from the decay of a biexciton at an impurity-atom complex in aSe quantum well.
Our result establishes impurity atoms inSe as a potential platform for photonic quantum technologies using radiative cascades.
arXiv Detail & Related papers (2022-03-11T23:15:37Z) - Stokes--anti-Stokes light scattering process: -- A photon-wave-function
approach [0.0]
We use this formalism to describe the process of correlated Stokes--anti-Stokes Raman scattering.
We arrive at an expression for the two-photon wave function of the scattered SaS photon pair.
arXiv Detail & Related papers (2020-07-10T12:57:00Z) - Entanglement dynamics in dissipative photonic Mott insulators [62.997667081978825]
In spite of particle losses the quantum entanglement propagation exhibits a ballistic character with propagation speeds related to the differerent quasiparticles that are involved in the dynamics.
Our analysis reveals that photon dissipation has a strikingly asymmetric behavior in the two configurations with a much more dramatic role on the holon entanglement propagation than for the doublon case.
arXiv Detail & Related papers (2020-04-27T15:48:24Z) - Quantum-Clustered Two-Photon Walks [68.8204255655161]
We demonstrate a previously unknown two-photon effect in a discrete-time quantum walk.
Two identical bosons with no mutual interactions can remain clustered together.
The two photons move in the same direction at each step due to a two-photon quantum interference phenomenon.
arXiv Detail & Related papers (2020-03-12T17:02:35Z) - Deterministic control of photonic de Broglie waves using coherence
optics: Coherence de Broglie waves [0.0]
photonic de Broglie waves are inversely proportional to the number of entangled photons acting on a beam splitter.
Mach-Zehnder interferometer-based deterministic photonic de Broglie waves are studied in a coherence regime.
arXiv Detail & Related papers (2020-01-19T22:55:13Z)
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.