We consider the problem of semantic security via classical-quantum and quantum wiretap channels and use explicit constructions to transform a non-secure code into a semantically secure code, achieving capacity by means of biregular irreducible functions. Explicit parameters in finite regimes can be extracted from theorems. We also generalize the semantic security capacity theorem, which shows that a strongly secure code guarantees a semantically secure code with the same secrecy rate, to any quantum channel, including the infinite-dimensional and non-Gaussian ones.
翻译:我们考虑通过古典分子和量子窃听渠道进行语义安全的问题,并使用明确的构思,将非安全代码转换成一种具有安全性的代码,通过两种不规则的不可减损功能获得能力。从理论中可以提取有限制度中的明确参数。我们还将语义安全能力理论加以概括,这表明一个强有力的安全代码保证一个具有相同保密率的语义安全代码,适用于任何量子频道,包括无限的和非的高加索频道。