The advent of quantum computers and algorithms challenges the semantic\nsecurity of symmetric and asymmetric cryptosystems. Thus, the implementation\nof new cryptographic primitives is essential. They must follow the breakthroughs\nand properties of quantum calculators which make vulnerable existing\ncryptosystems. In this paper, we propose a random number generation\nmodel based on evaluation of the thermal noise power of the volume elements\nof an electronic system with a volume of 58.83 cm3. We prove through the\nsampling of the temperature of each volume element that it is difficult for an\nattacker to carry out an exploit. In 12 seconds, we generate for 7 volume elements,\na stream of randomly generated keys of 187 digits that will be transmitted\nfrom source to destination through the properties of quantum cryptography.
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