Multimode Photon-Photon Coupling
- URL: http://arxiv.org/abs/2509.06778v1
- Date: Mon, 08 Sep 2025 15:03:12 GMT
- Title: Multimode Photon-Photon Coupling
- Authors: Shourya Viren, Rakesh Kumar Nayak, Biswanath Bhoi, Rajeev Singh,
- Abstract summary: This study investigates a planar hybrid system consisting of three complementary splitring resonators (CSRRs)<n>Analysis of the transmission spectra revealed distinct anti-crossing behavior, indicative of strong photon-photon coupling (PPC)
- Score: 0.05833117322405446
- License: http://arxiv.org/licenses/nonexclusive-distrib/1.0/
- Abstract: This study investigates a planar hybrid system consisting of three complementary splitring resonators (CSRRs), designed to examine interactions among multiple photon modes at room temperature. The system was modeled and simulated using the full-wave electromagnetic solver CST Microwave Studio. Analysis of the transmission spectra (|S21|) as a function of frequency for different CSRR dimensions revealed distinct anti-crossing behavior, indicative of strong photon-photon coupling (PPC). To explain this phenomenon, we present theoretical framework that quantitatively captures the observed mode hybridization and provides estimates of the coupling strength, which are further validated experimentally. This work not only elucidates the fundamental dynamics of PPC in planar systems but also offers practical guidance for designing hybrid platforms with tunable photon interactions, paving the way for future advancements in planar magnonic and hybrid photonic technologies.
Related papers
- A Hybrid Jump-Diffusion Model for Coherent Optical Control of Quantum Emitters in hBN [36.9794819679151]
Hexagonal boron nitride (hBN) has emerged as a promising two-dimensional host for stable single-photon emission.<n>We present a simulation-based study of temperature-dependent spectral dynamics and optical coherence in a mechanically decoupled quantum emitter in hBN.
arXiv Detail & Related papers (2026-01-28T13:23:28Z) - Tunable Single- and Multiphoton Bundles in Cavity-Coupled Atomic Arrays [5.815593000336747]
We propose an experimentally accessible scheme for realizing nonclassical light in cavity-coupled reconfigurable atomic arrays.<n>By coherently controlling the collective interference phase, the system switches from single-photon blockade to high-purity multiphoton bundle emission.
arXiv Detail & Related papers (2025-12-01T03:51:29Z) - Proximity driven photon-tunneling in chiral quantum hybrid systems [0.05131152350448099]
We investigate photon tunneling in a pair of coupled inverted circular split-ring microwave resonators with four discrete chiral orientations.<n>We observe strong modulation of the transmission spectra, including mode splitting, interference effects, and the formation of dark states.
arXiv Detail & Related papers (2025-11-25T14:35:29Z) - Beyond critical coupling: optimal design considerations for spontaneous four-wave mixing in microring resonators [39.786158632348986]
We present a self-contained analytical model for biphoton generation in microring resonators.<n>Our interaction-picture-based approach reveals time-frequency biphoton correlations while also predicting absolute generation rates.<n>As a whole, our formalism should prove valuable for the practical design of integrated photon sources.
arXiv Detail & Related papers (2025-11-11T18:46:43Z) - Photon-mediated interactions and dynamics of coherently driven quantum emitters in complex photonic environments [41.94295877935867]
Born-Markov master equations have been extensively employed in the description of quantum optical phenomena.<n>We benchmark this modeling approach for the quantum dynamics of the emitter pair against exact calculations based on a macroscopic field quantization formalism.<n>Our analysis reveals four distinct regimes of laser driving and frequency splitting that lead to markedly different levels of accuracy in the effective model.
arXiv Detail & Related papers (2025-08-01T09:38:07Z) - Unlocking Photon Magnon Interplay via Saturation Magnetization [0.0]
Photon magnon hybrid systems present a promising platform for the development of next generation devices in quantum information processing and quantum sensing technologies.<n>We investigate the control of photon magnon coupling (PMC) strength through systematic variation of the saturation magnetization in a planar hexagonal ring resonator (HRR) integrated with a yttrium iron garnet (YIG) thin film configuration.
arXiv Detail & Related papers (2025-05-17T12:18:41Z) - Prethermalization of light and matter in cavity-coupled Rydberg arrays [44.99833362998488]
We explore the dynamics of two-dimensional Rydberg atom arrays coupled to a single-mode optical cavity.<n>We discover a novel prethermalization regime driven by the interplay between short-range Rydberg interactions and long-range photon-mediated interactions.
arXiv Detail & Related papers (2025-04-08T17:59:59Z) - Hybrid Photon-magnon Systems: Exploring the Purcell Effect [0.0]
We present a novel approach to observing the Purcell effect in a photon-magnon coupled (PMC) hybrid system.<n>As the magnon damping increases, the anti-crossing behavior between photon and magnon modes in the transmission spectra diminishes.<n>This transition is attributed to an enhanced spontaneous emission rate of microwave photons when coupled to lossy magnons.
arXiv Detail & Related papers (2025-01-08T15:44:59Z) - Unveiling photon-photon coupling induced transparency and absorption [0.0]
This study presents the theoretical foundations of an analogous electromagnetically induced transparency (EIT) and absorption (EIA) respectively.
We provide a concise phenomenological description with analytical expressions for transmission spectra and dispersion elucidating how the interplay of coherent and dissipative interactions in a coupled system results in the emergence of level repulsion and attraction, corresponding to CIT and CIA, respectively.
arXiv Detail & Related papers (2024-06-28T09:18:30Z) - Multimode Ultrastrong Coupling in Three-Dimensional Photonic-Crystal Cavities [36.212701687134064]
One-dimensional photonic-crystal cavities have uniform spatial profiles in the lateral plane.
Fabrication challenges have hindered the achievement of strong coupling in 3D-PCCs.
We report the realization of multimode ultrastrong coupling in a 3D-PCC at terahertz frequencies.
arXiv Detail & Related papers (2023-08-23T21:14:01Z) - Coherent electron-vibron interactions in Surface-Enhanced Raman
Scattering (SERS) [0.0]
coherent electron-vibron interactions contribute beyond standard optomechanical models for off-resonant or resonance SERS.
Raman interference of both resonant and non-resonant contributions can provide several orders of magnitude modifications of the SERS peaks.
arXiv Detail & Related papers (2023-07-31T17:17:52Z) - 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) - Coexistence of coupling-induced transparency and absorption of
transmission signals in magnon-mediated photon-photon coupling [3.6704226968275258]
Coexistence of coupling-induced transparency (CIT) and absorption (CIA) of signals in magnon-mediated photon-photon coupling was experimentally determined.
This work, promisingly, can provide guidance for design of efficient, flexible, and well-controllable photon-magnonic devices.
arXiv Detail & Related papers (2022-02-06T00:56:26Z) - Qubit-photon bound states in topological waveguides with long-range
hoppings [62.997667081978825]
Quantum emitters interacting with photonic band-gap materials lead to the appearance of qubit-photon bound states.
We study the features of the qubit-photon bound states when the emitters couple to the bulk modes in the different phases.
We consider the coupling of emitters to the edge modes appearing in the different topological phases.
arXiv Detail & Related papers (2021-05-26T10:57:21Z)
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.