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Quantum to classical one-way function and its applications in quantum money authentication

机译:量子与古典单向功能及其在量子货币认证中的应用

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In 2013, Farid and Vasiliev [arXiv: 1310.4922 [quant-ph]] for the first time proposed a way to construct a protocol for the realisation of "Classical to Quantum" one-way hash function, a derivative of the quantum one-way function as defined by Gottesman and Chuang [Technical Report arXiv: quant-ph/0105032] and used it for constructing quantum digital signatures. We, on the other hand, for the first time, propose the idea of a different kind of one-way function, which is "quantum-classical" in nature, that is, it takes an n-qubit quantum state of a definite kind as its input and produces a classical output. We formally define such a one-way function and propose a way to construct and realise it. The proposed one-way function turns out to be very useful in authenticating a quantum state in any quantum money scheme, and so we can construct many different quantum money schemes based on such a one-way function. Later in the paper, we also give explicit constructions of some interesting quantum money schemes like quantum bitcoins and quantum currency schemes, solely based on the proposed one-way function. The security of such schemes can be explained on the basis of the security of the underlying one-way functions.
机译:2013年,Farid和Vasiliev [Arxiv:1310.4922 [Quant-ph]]首次提出了一种方法来构建一个方案,用于实现“经典算法”单向哈希函数,Quantum单向的衍生物由Gottesman和Chuang [技术报告Arxiv:Quant-ph / 0105032]定义的功能,并用它来构建量子数字签名。另一方面,我们首次提出了一种不同类型的单向函数的想法,这是“量子古典”的本质上,即,它需要一个明确的Qubit量子状态作为其输入并产生经典的输出。我们正式定义了这样的单向功能,并提出了一种建造和实现它的方法。所提出的单向功能证明,在任何量子货币方案中验证量子状态方面非常有用,因此我们可以基于这种单向功能来构造许多不同的量子金钱方案。在本文中,我们还仅基于所提出的单向功能,给出一些有趣的量子金钱方案的明确建设,如昆腾比特币和量子货币方案。可以基于基础单向函数的安全性来解释这种方案的安全性。

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