Electrons herald non-classical light
arXiv:2409.11300 · doi:10.1038/s41567-025-03033-1
Abstract
Free electrons are a widespread and universal source of electromagnetic fields. The past decades witnessed ever-growing control over many aspects of electron-generated radiation, from the incoherent emission produced by X-ray tubes to the exceptional brilliance of free-electron lasers. Reduced to the elementary process of quantized energy exchange between individual electrons and the electromagnetic field, electron beams may facilitate future sources of tunable quantum light. However, the quantum features of such radiation are tied to the correlation of the particles, calling for the joint electronic and photonic state to be explored for further applications. Here, we demonstrate the coherent parametric generation of non-classical states of light by free electrons. We show that the quantized electron energy loss heralds the number of photons generated in a dielectric waveguide. In Hanbury-Brown-Twiss measurements, an electron-heralded single-photon state is revealed via antibunching intensity correlations, while two-quantum energy losses of individual electrons yield pronounced two-photon coincidences. The approach facilitates the tailored preparation of higher-number Fock and other optical quantum states based on controlled interactions with free-electron beams.
References in corpus (37)
- Quantum sensing
- Review article: Linear optical quantum computing
- Optical excitations in electron microscopy
- Integrated Photonic Quantum Technologies
- Free-Space distribution of entanglement and single photons over 144 km
- Photonic Boson Sampling in a Tunable Circuit
- Non-classical correlations between single photons and phonons from a mechanical oscillator
- High-yield wafer-scale fabrication of ultralow-loss, dispersion-engineered silicon nitride photonic circuits
- Attosecond Electron Pulse Trains and Quantum State Reconstruction in Ultrafast Transmission Electron Microscopy
- Entanglements of electrons and cavity-photons in the strong coupling regime
- Controlling free electrons with optical whispering-gallery modes
- Single-Mode Parametric-Down-Conversion States with 50 Photons as a Source for Mesoscopic Quantum Optics
- Observation of the Stimulated Quantum Cherenkov Effect
- Integrated photonics enables continuous-beam electron phase modulation
- Cavity-mediated electron-photon pairs
- Field locked to Fock state by quantum feedback with single photon corrections
- Spatially resolved quantum nano-optics of single photons using an electron microscope
- Experimental generation of multi-photon Fock states
- The Mobius function is strongly orthogonal to nilsequences
- Coherence measures for heralded single-photon sources
- Cathodoluminescence excitation spectroscopy: nanoscale imaging of excitation pathways
- Deterministic Generation of Large Fock States
- A Deterministic and Nondestructively-Verifiable Photon Number Source
- Unveiling the coupling of single metallic nanoparticles to whispering-gallery microcavities
- Quantum state heralding using photonic integrated circuits with free electrons
- Spectroscopic coincidence experiments in transmission electron microscopy
- Comment on "Coherence measures for heralded single-photon sources"
- Time-correlated electron and photon counting microscopy
- Free-electron interactions with photonic GKP states: universal control and quantum error correction
- Ultrafast phonon-mediated dephasing of color centers in hexagonal boron nitride probed by electron beams
- Generation of entangled waveguided photon pairs by free electrons
- Sub-to-super-Poissonian photon statistics in cathodoluminescence of color center ensembles in isolated diamond crystals
- Superbunching in cathodoluminescence: a master equation approach
- Quantum eraser experiments for the demonstration of entanglement between swift electrons and light
- Unveiling the nature of cathodoluminescence from photon statistics
- Strongly correlated multi-electron bunches from interaction with quantum light
- Tunable quantum light by modulated free electrons