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Photon Temporal Modes: A Complete Framework for Quantum Information Science
DOI:10.1103/PhysRevX.5.041017.png)
摘要
En 中文
Field-orthogonal temporal modes of photonic quantum states provide a new framework for quantum information science (QIS). They intrinsically span a high-dimensional Hilbert space and lend themselves to integration into existing single-mode fiber communication networks. We show that the three main requirements to construct a valid framework for QIS the controlled generation of resource states, the targeted and highly efficient manipulation of temporal modes, and their efficient detection can be fulfilled with current technology. We suggest implementations of diverse QIS applications based on this complete set of building blocks.
Keyword:
FREQUENCY-CONVERSION
2-PHOTON ENTANGLEMENT
UNITARY OPERATOR
DOWN-CONVERSION
LINEAR OPTICS
GENERATION
LIGHT
STATES
FIBER
PULSE
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期刊
IF:
15.7
论文数:
2.7K
被引数:
3.4W
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