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Post Quantum Blockchain with Segregation Witness

机译:Quantum Blockchain与分离见证

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Blockchain is a very important technology and financial innovation since the birth of the Internet. It is an innovative and integrated application of many technologies, with the characteristics of open and transparent data, not easy to tamper with, easy to trace and so on. Its cryptographic security relies on asymmetric cryptography, such as ECC, RSA. However, with the surprising development of quantum technology, asymmetric cryptography schemes mentioned above would become vulnerable. Recently, some lattice-based blockchain systems have been proposed to be secure against attacks in the quantum era. Although these schemes have theoretical significance, it is unpractical in actual situation due to handling capacity. In this paper, aiming at tackling the critical issue of throughput, we proposed post quantum blockchain with segregation witness which can effectively the proportion of signatures in block size. Based on the hardness assumption of Short Integer Solution (SIS), we demonstrate that the proposed post quantum blockchain with segregation witness existential unforgeability against adaptive chosen-message attacks in the random oracle. As compared to the existing scheme, our scheme has better performance in handling capacity. As the underlying lattice problem is intractable even for quantum computers, our scheme would work well in the quantum age.
机译:由于互联网诞生以来,区块链是一个非常重要的技术和金融创新。它是许多技术的创新和综合应用,具有开放和透明数据的特点,不易篡改,易于追踪等。其加密安全性依赖于非对称密码学,例如ECC,RSA。然而,随着量子技术的令人惊讶的发展,上述不对称加密方案将变得脆弱。最近,已经提出了一些基于格子的区块链系统以防止量子时代的攻击。虽然这些方案具有理论意义,但由于处理能力导致的实际情况下,它在实际情况下是不可行的。在本文中,旨在解决吞吐量的关键问题,我们提出了Quantum Slaplchain的分离证人,这可以有效地占块大小的签名比例。基于短整数解决方案的硬度(SIS),我们证明了所提出的Quantum区块链具有对随机甲骨文中的自适应所选信息攻击的存在性不可识别的。与现有方案相比,我们的计划具有更好的处理能力性能。由于潜在的晶格问题甚至对于量子计算机即使对于量子计算机而言,我们的计划也会在量子年龄良好工作。

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