Interfacing picosecond and nanosecond quantum light pulses
arXiv:2211.05112 · doi:10.1038/s41566-023-01214-z
Abstract
Light is a key information carrier, enabling worldwide high-speed data transmission through a telecommunication fibre network. This information-carrying capacity can be extended to transmitting quantum information (QI) by encoding it in single photons -- flying qubits. However, various QI-processing platforms operate at vastly different timescales. QI-processing units in atomic media, operating within nanosecond to microsecond timescales, and high-speed quantum communication, at picosecond timescales, cannot be efficiently linked due to orders of magnitude mismatch in the timescales or, correspondingly, spectral linewidths. In this work, we develop a large-aperture time lens using complex high-bandwidth electro-optic phase modulation to bridge this gap. We demonstrate coherent, deterministic spectral bandwidth compression of quantum light pulses by more than two orders of magnitude with high efficiency. It will facilitate large-scale hybrid QI-processing by linking the ultrafast and quasi-continuous-wave experimental platforms, which until now, to a large extent, have been developing independently.
8 pages + 3 supplement, 5 + 2 figures, version accepted for publication
References in corpus (10)
- The Quantum Internet
- Heralded Generation of Ultrafast Single Photons in Pure Quantum States
- A Quantum Gate between a Flying Optical Photon and a Single Trapped Atom
- Towards a global quantum network
- Integrated Electro-Optic Isolator on Thin Film Lithium Niobate
- Quantum memory for entangled two-mode squeezed states
- Shaping the Phase of a Single Photon
- Interfacing GHz-bandwidth heralded single photons with a room-temperature Raman quantum memory
- Highly efficient frequency conversion with bandwidth compression of quantum light
- Spectral broadening and shaping of nanosecond pulses: towards shaping of single photons from quantum emitters
Cited by in corpus (11)
- Generation of three-dimensional cluster entangled state
- Structured Light Modal Interface via Liquid-Crystal Planar Optics
- Ultrafast electro-optic Time-Frequency Fractional Fourier Imaging at the Single-Photon Level
- On the role of chirping in pulsed single photon spectroscopy
- Erecting time telescope for photonic quantum networks
- Interferometric sorting of temporal Hermite-Gauss modes via temporal Gouy phase
- Aberration-optimized electro-optic time lens with a tunable aperture
- Time-resolved second-order autocorrelation function of parametric downconversion
- Telecom-Integrated Photonic Memory Operating Near the Mechanical Ground State
- Temporal cavities as temporal mode filters for frequency combs
- Toward quantum interconnects featuring nanometer-to-picometer bandwidth compression and THz-range quantum frequency conversion