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首页> 外文期刊>LIPIcs : Leibniz International Proceedings in Informatics >Quantum Ciphertext Authentication and Key Recycling with the Trap Code
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Quantum Ciphertext Authentication and Key Recycling with the Trap Code

机译:带有陷阱代码的量子密文身份验证和密钥回收

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We investigate quantum authentication schemes constructed from quantum error-correcting codes. We show that if the code has a property called purity testing, then the resulting authentication scheme guarantees the integrity of ciphertexts, not just plaintexts. On top of that, if the code is strong purity testing, the authentication scheme also allows the encryption key to be recycled, partially even if the authentication rejects. Such a strong notion of authentication is useful in a setting where multiple ciphertexts can be present simultaneously, such as in interactive or delegated quantum computation. With these settings in mind, we give an explicit code (based on the trap code) that is strong purity testing but, contrary to other known strong-purity-testing codes, allows for natural computation on ciphertexts.
机译:我们研究由量子纠错码构造的量子认证方案。我们证明,如果代码具有称为纯度测试的属性,那么生成的身份验证方案将保证密文(而不只是明文)的完整性。最重要的是,如果代码经过严格的纯度测试,那么即使认证被拒绝,认证方案也允许部分地回收加密密钥。这种强大的身份验证概念在可以同时存在多个密文的环境中很有用,例如在交互式或委托量子计算中。考虑到这些设置,我们给出了一个显式代码(基于陷阱代码),该代码是强纯度测试,但与其他已知的强纯度测试代码相反,它允许对密文进行自然计算。

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