Quantum optical arbitrary waveform manipulation and measurement in real time.
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Summary
The theoretical and experimental progress, as a whole, points to an enabling optical technique for various applications such as ultradense quantum coding, unity-efficiency cavity-atom quantum memories, and high-speed quantum computing.
- Type
- article
- Published
- 2014-11-17
- Cited by
- 43
- References
- 40
- Access
- Open access
- OpenAlex
- https://openalex.org/W25402035
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:5845446
Keywords
Meaning (existential), Psychology, Psychotherapist
References
- Engineering Optimization : Theory and Practice
- Nonlinear Fiber Optics
- Quantum optical coherence tomography of a biological sample
- Optical arbitrary waveform processing of more than 100 spectral comb lines
- Quantum frequency conversion.
- Frequency up-conversion of quantum images.
- Bridging visible and telecom wavelengths with a single-mode broadband photon pair source
- Dynamic optical arbitrary waveform generation and measurement.
- Optimal photons for quantum-information processing
- Optical arbitrary waveform generation
- Multiphoton entanglement and interferometry
- Quantum State Transfer and Entanglement Distribution among Distant Nodes in a Quantum Network
- Electro-optic modulation of single photons.
- Optical pulse shaping approaches to coherent control
- Terahertz radiation shaping based on optical spectrum modulation in the time domain.
- Generation of paired photons with controllable waveforms.
- Generation of very flat optical frequency combs from continuous-wave lasers using cascaded intensity and phase modulators driven by tailored radio frequency waveforms.
- A quantum pulse gate based on spectrally engineered sum frequency generation.
- Quantum optical waveform conversion.
- Optimized heralding schemes for single photons
Cited by
- Photon temporal modes: a complete framework for quantum information science
- High-speed quantum communications in telecom fibers using overlapping temporal modes
- Theory of high-efficiency sum-frequency generation for single-photon waveform conversion
- Frequency and bandwidth conversion of single photons in a room-temperature diamond quantum memory
- Upconversion-based receivers for quantum hacking-resistant quantum key distribution
- Low-noise Quantum Frequency Conversion in Titanium- diffused Lithium Niobate waveguide
- Multidimensional mode-separable frequency conversion for high-speed quantum communication
- Photons & Phonons: A room-temperature diamond quantum memory
- Ultrafast manipulation of single photons using dispersion and sum-frequency generation
- Programmable optical waveform reshaping on a picosecond timescale.
- Rapidly reconfigurable high-fidelity optical arbitrary waveform generation in heterogeneous photonic integrated circuits.
- Spectrally Multiplexed Upconversion Detection With C-Band Pump and Signal Wavelengths
- Reshaping of telecom band optical signals using programmable pump pulses
- Engineering temporal-mode-selective frequency conversion in nonlinear optical waveguides: from theory to experiment.
- Quantum Parametric Mode Sorting: Beating the Time-Frequency Filtering
- Quantum Airy photons
- Direct Generation and Detection of Quantum Correlated Photons with 3.2 um Wavelength Spacing
- Tomography and Purification of the Temporal-Mode Structure of Quantum Light.
- Entanglement swapping for generation of heralded time-frequency-entangled photon pairs
- Tailoring nonlinear processes for quantum optics with pulsed temporal-mode encodings
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