Pulse generator applied to distributing continuous variable quantum secret keys

A quantum key distribution and pulse generator technology, applied in key distribution, which can solve the problems of long control time, limited clock accuracy, and high price

Active Publication Date: 2014-07-02
SHANXI UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The existing high-performance commercial dual-channel pulse generator can realize this function, but it is large in size and expensive (tens of thousands of yuan), and it also needs a dedicated communication interface (USB, GPIB, etc.) to adjust parameters, which takes a long time to control and cannot Well integrated in quantum key distribution systems
If FPGA deve

Method used

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  • Pulse generator applied to distributing continuous variable quantum secret keys
  • Pulse generator applied to distributing continuous variable quantum secret keys
  • Pulse generator applied to distributing continuous variable quantum secret keys

Examples

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Example Embodiment

[0023] figure 1 Shown is a pulse generator suitable for continuous variable quantum key distribution, including a digital circuit 1 and an analog circuit 2. The digital circuit 1 includes: a first programmable pulse width modulation chip 3 and a first programmable delay line chip 5. The second programmable pulse width modulation chip 4 and the second programmable delay line chip 6; the analog circuit 2 includes the first power amplifying circuit 7 and the second power amplifying circuit 8; the externally input clock signal simultaneously triggers the first programmable The pulse width modulation chip 3 and the second programmable pulse width modulation chip 4 generate two pulses that can precisely modulate the pulse width, and then pass through the first programmable delay line chip 5 and the second programmable delay line chip 6 for precise delay. When; the two pulses generated by the digital circuit 1 are output after the first power amplifying circuit 7 and the second power a...

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Abstract

The invention provides a pulse generator applied to distributing continuous variable quantum secret keys. The pulse generator comprises a digital circuit (1) and an analog circuit (2). The digital circuit (1) comprises a first programmable pulse width modulation chip (3) and a first programmable delay wire chip (5), a second programmable pulse width modulation chip (4) and a second programmable delay wire chip (6). The analog circuit (2) comprises a first power amplifying circuit (7) and a second power amplifying circuit (8). An externally input clock signal triggers the digital circuit (1) to generate two pulses of which the pulse and time delay can be accurately adjusted, and the two pulses are output through first power amplifying circuit (7) and the second power amplifying circuit (8) in the simulation circuit (2) respectively. The pulse generator has the advantages of being capable of accurately adjusting the pulse width, high in time delay accuracy, short in control time, high in driving capacity, small in size, low in cost and the like, and the pulse generator can be integrated in a system for distributing the continuous variable quantum secret keys very well.

Description

technical field [0001] The invention relates to a pulse generator, in particular to a pulse generator suitable for continuous variable quantum key distribution, in particular to a dual-channel pulse used to drive a Mach-Zehnder lithium niobate intensity modulator to generate high extinction ratio pulse light Generators can be well integrated in continuous variable quantum key distribution systems. Background technique [0002] Quantum communication based on the basic principles of quantum mechanics has unconditional security, and has very broad application prospects in the fields of national defense, commerce, and networks. Quantum key distribution is a direction closest to practical application in this field. According to whether the physical quantity used for encoding is the separated spectrum or the continuous spectrum of the light field, it can be divided into two directions: separated variables and continuous variables. Continuous variable quantum key distribution does...

Claims

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Application Information

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IPC IPC(8): H04L9/08H03K3/017
Inventor 王旭阳李永民刘建强
Owner SHANXI UNIV
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