首页> 外文期刊>Cryptography >Garbled Quantum Computation
【24h】

Garbled Quantum Computation

机译:乱码计算

获取原文
           

摘要

The universal blind quantum computation protocol (UBQC) enables an almost classical client to delegate a quantum computation to an untrusted quantum server (in the form of a garbled quantum circuit) while the security for the client is unconditional. In this contribution, we explore the possibility of extending the verifiable UBQC, to achieve further functionalities following the analogous research for classical circuits (Yao 1986). First, exploring the asymmetric nature of UBQC (the client preparing only single qubits, while the server runs the entire quantum computation), we present a “Yao”-type protocol for secure two-party quantum computation. Similar to the classical setting, our quantum Yao protocol is secure against a specious (quantum honest-but-curious) garbler, but in our case, against a (fully) malicious evaluator. Unlike the previous work on quantum two-party computation of Dupuis et al., 2010, we do not require any online-quantum communication between the garbler and the evaluator and, thus, no extra cryptographic primitive. This feature will allow us to construct a simple universal one-time compiler for any quantum computation using one-time memory, in a similar way to the classical work of Goldwasser et al., 2008, while more efficiently than the previous work of Broadbent et al., 2013.
机译:通用盲量子计算协议(UBQC)使几乎经典的客户端能够将量子计算委托给不受信任的量子服务器(以乱码量子电路的形式),而客户端的安全性是无条件的。在这一贡献中,我们探索了扩展可验证的UBQC的可能性,以实现对经典电路的类似研究(Yao 1986),从而实现进一步的功能。首先,探索UBQC的非对称性质(客户端仅准备单个qubit,而服务器运行整个量子计算),我们提出了一种用于安全两方量子计算的“ Yao”型协议。与经典环境类似,我们的量子Yao协议可以防止恶意的(量子诚实但好奇的)垃圾,但在我们的情况下,可以针对(完全)恶意的评估者。与Dupuis等人(2010年)关于量子两方计算的先前工作不同,我们不需要垃圾收集者和评估者之间进行任何在线量子通信,因此不需要额外的加密原语。此功能将使我们能够使用一次性内存为任何量子计算构造一个简单的通用一次性编译器,类似于Goldwasser等人(2008年)的经典著作,而其效率要比Broadbent等人以前的著作更高效。等,2013年。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号