Evidence of the quantum-optical nature of high-harmonic generation
arXiv:2405.15022 · doi:10.1103/PRXQuantum.5.040319
Abstract
High-harmonic generation is a light up-conversion process occurring in a strong laser field, leading to coherent bursts of extreme ultrashort broadband radiation [1]. As a new perspective, we propose that ultrafast strong-field electronic or photonic processes such as high-harmonic generation can potentially generate non-classical states of light well before the decoherence of the system occurs [2, 3]. This could address fundamental challenges in quantum technology such as scalability, decoherence or the generation of massively entangled states [4]. Here, we report experimental evidence of the non-classical nature of the harmonic emission in several semiconductors excited by a femtosecond infrared laser. By investigating single- and double beam intensity cross-correlation [5], we measure characteristic, non-classical features in the single photon statistics. We observe two-mode squeezing in the generated harmonic radiation, which depends on the laser intensity that governs the transition from Super-Poissonian to Poissonian photon statistics. The measured violation of the Cauchy-Schwarz inequality realizes a direct test of multipartite entanglement in high-harmonic generation [6]. This result is supported by the theory of multimodal detection and the Hamiltonian from which the effective squeezing modes of the harmonics can be derived [7, 8]. With this work, we show experimentally that high-harmonic generation is a new quantum bosonic platform that intrinsically produces non-classical states of light with unique features such as multipartite broadband entanglement or multimode squeezing. The source operates at room temperature using standard semiconductors and a standard commercial fiber laser, opening new routes for the quantum industry, such as optical quantum computing, communication and imaging.
39 pages, 11 figures
References in corpus (14)
- Advances in High Dimensional Quantum Entanglement
- Probing multimode squeezing with correlation functions
- Introduction to theory of high-harmonic generation in solids: tutorial
- Generation of optical Schrödinger cat states in intense laser-matter interactions
- On the Quantum-Optical Nature of High Harmonic Generation
- Violation of the Cauchy-Schwarz inequality with matter waves
- Photon-statistics force in ultrafast electron dynamics
- Quantum electrodynamics of intense laser-matter interactions: A tool for quantum state engineering
- High photon number entangled states and coherent state superposition from the extreme-ultraviolet to the far infrared
- Light emission from strongly driven many-body systems
- High harmonic spectroscopy of quantum phase transitions in a high-T superconductor
- Superposition of two-mode squeezed states for quantum information processing and quantum sensing
- Electron-correlation induced nonclassicallity of light from high-harmonic generation
- A quantum optical description of photon statistics and cross-correlations in high harmonic generation
Cited by in corpus (11)
- Structured squeezed light allows for high-harmonic generation in classical forbidden geometries
- Squeezed states of light after high-harmonic generation in excited atomic systems
- Driving electrons at needle tips strongly with quantum light
- High-Harmonic Generation in a Crystal Driven by Quantum Light
- Ultrafast quantum light uncertainty dynamics in real time
- Hierarchy of approximations for describing quantum light from high-harmonic generation: A Fermi-Hubbard model study
- Observation of a Multimode Displaced Squeezed State in High-Harmonic Generation
- Quantum state engineering of light using intensity measurements and post-selection
- Control of nonlinear Compton scattering in a squeezed vacuum
- High-Order Harmonic Generation with Beyond-Semiclassical Emitter Dynamics: A Strong-Field Quantum Optical Heisenberg Picture Approach
- Limitations of an approximative phase-space description in strong-field quantum optics