Free Electrons Can Induce Entanglement Between Photons
arXiv:2111.14181 · doi:10.1038/s41534-022-00540-4
Abstract
Entanglement of photons is a fundamental feature of quantum mechanics, which stands at the core of quantum technologies such as photonic quantum computing, communication, and sensing. An ongoing challenge in all these is finding an efficient and controllable mechanism to entangle photons. Recent experimental developments in electron microscopy enable to control the quantum interaction between free electrons and light. Here, we show that free electrons can create entanglement and bunching of light. Free electrons can control the second-order coherence of initially independent photonic states, even in spatially separated cavities that cannot directly interact. Free electrons thus provide a type of optical nonlinearity that acts in a nonlocal manner, offering a new way of heralding the creation of entanglement. Intriguingly, pre-shaping the electron's wavefunction provides the knob for tuning the photonic quantum correlations. The concept can be generalized to entangle not only photons but also photonic quasiparticles such as plasmon-polaritons and phonons.
References in corpus (18)
- Quantum computational advantage using photons
- Universal Quantum Computation with Continuous-Variable Cluster States
- Heralded Generation of Ultrafast Single Photons in Pure Quantum States
- Attosecond Electron Pulse Trains and Quantum State Reconstruction in Ultrafast Transmission Electron Microscopy
- Electron Beam Spectroscopy for Nanophotonics
- Experimental Observation of Four-Photon Entangled Dicke State with High Fidelity
- Superdense coding of quantum states
- Ponderomotive generation and detection of attosecond free-electron pulse trains
- Integrated photonics enables continuous-beam electron phase modulation
- Shaping the waveform of entangled photons
- Experimental observation of an entire family of four-photon entangled states
- Quantum entanglement and modulation enhancement of free-electron-bound-electron interaction
- Light emission is fundamentally tied to the quantum coherence of the emitting particle
- Towards atomic-resolution quantum measurements with coherently-shaped free electrons
- Free-Electron Shaping Using Quantum Light
- Super- and subradiance by entangled free particles
- Dual mode microwave deflection cavities for ultrafast electron microscopy
- Imprinting the quantum statistics of photons on free electrons
Cited by in corpus (13)
- Roadmap on structured waves
- Observation of 2D Cherenkov radiation
- Creation of Optical Cat and GKP States Using Shaped Free Electrons
- Free-electron interactions with photonic GKP states: universal control and quantum error correction
- Generation of entangled waveguided photon pairs by free electrons
- Quantum eraser experiments for the demonstration of entanglement between swift electrons and light
- Quantum Nanophotonics with Energetic Particles:X-rays and Free Electrons
- Strongly correlated multi-electron bunches from interaction with quantum light
- Superradiant Electron Energy Loss Spectroscopy
- Topologically Protected Strong-Interaction of Photonics with Free Electron
- Double-superradiant cathodoluminescence
- Microwave-optics entanglement via coupled opto- and magnomechanical microspheres
- Quantum state preparation and readout with modulated electrons