An improved method for generating a light quantum random number
An implementation method and random number generator technology, applied in the field of quantum communication, can solve the problems of unstable mass production of random numbers, etc., and achieve the effects of stable random number generation, improved utilization rate, and uniform photon number
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Embodiment 1
[0053] see image 3 , this embodiment provides an improved implementation method for photon random number generation, which is applied to a random number generator (which may be the random number generator mentioned above). Wherein, the random number generator in this embodiment includes a light source 1 , a detector array 2 and a randomness extractor 3 . The detector array 2 is used to block the light emitted by the light source 1 and receive photons in the light to generate corresponding electrons and voltages, which are converted into bit streams accordingly. The randomness extractor 3 is used to randomly extract the data it receives and obtain random numbers.
[0054] The realization method of the improved optical quantum random number generation comprises the following steps:
[0055] Step 1, homogenizing the light field emitted by the light source 1 to the detector array 2;
[0056] Step 2, receiving the bit stream generated by the detector array 2, and periodically c...
Embodiment 2
[0069] see Figure 4 , Figure 5 as well as Figure 6 , this embodiment provides an improved device for generating quantum random numbers based on optics, which is the random number generator in Embodiment 1, and the implementation method for generating optical quantum random numbers improved in Embodiment 1 is applied. The improved optical-based quantum random number generation device includes a light source 1, a detector array 2, a randomness extractor 3, a uniform light material module 4, and a pixel processing control module 5, wherein the randomness extractor 3 is a simplified randomness The number of extractor 3 may be only one. The detector array 2 may be provided with a lossy channel 2a, a photoelectric sensor 2b and an analog-to-digital converter 2c. Wherein, Step 1 in the implementation method of Embodiment 1 can use the homogenizing material module 4 of this embodiment to homogenize the light field.
[0070] The light source 1 may be a light emitting diode, a la...
Embodiment 3
[0081] see Figure 7-10 , this embodiment provides an arrangement structure of an optical quantum random number generator, which includes a light source 1 , a detector array 2 , a PCB board 7 , a shield 8 , a randomness extractor 3 and a pixel processing control module 5 . Wherein, the light source 1 , the detector array 2 , the randomness extractor 3 and the pixel processing control module 5 can adopt the corresponding components in the second embodiment. And the photosensor 2b in Embodiment 2 is the same as the multi-pixel photon sensor 6 in this embodiment.
[0082] The arrangement structure of the optical quantum random number generator of this embodiment is similar to the improved optical quantum random number generation device of embodiment 2, the difference is that the arrangement of the light source 1 and the detector array 2 of this embodiment is different, and , the present embodiment increases the PCB board 7 and the shielding case 8 .
[0083] In this embodiment,...
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