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A 33-Gbs SPAD-Based Quantum Random Number Generator Pouyan Keshavarzian
提出一种基于SPAD的量子随机数生成器,采用量子随机触发器方法,并通过建模和补偿熵降级实现高效随机数生成。
3.3 Gb/s
量子随机数生成器单光子雪崩二极管熵降级Verilog-AMS模型BCD工艺
▸提出量子随机触发器(QRFF)方法
▸开发了检测器和电路缺陷的熵降级建模方法
▸提出新型晶体管实现QRFF电路以补偿熵降级
Abstract
Quantum random number generators (QRNGs) are
a burgeoning technology used for a variety of applications,
including modern security and encryption systems. Typical meth-
ods exploit an entropy source combined with an extraction or
bit generation circuit in order to produce a random string.
In integrated designs, there is often little modeling or analytical
description of the entropy source, circuit extraction, and post-
processing provided. In this work, we present a single-photon
avalanche diode