论文标题

使用BELL和GHz状态在量子模拟器上使用Bell和GHz状态的测量设备不依赖于QSDC协议

Measurement-device-independent QSDC protocol using Bell and GHZ states on quantum simulator

论文作者

Gupta, Arunaday, Behera, Bikash K., Panigrahi, Prasanta K.

论文摘要

安全的加密协议对于现代通信系统是必不可少的。它是通过密码学中的加密过程实现的。在量子密码学中,量子密钥分布(QKD)是一种广受欢迎的量子通信方案,它使两方可以建立一个共享的秘密密钥,可用于加密和解密消息。但是,在此加密协议中,安全漏洞仍然存在,因为窃听器原则上仍然可以拦截执行隐式分析的所有密文,并且钥匙可能会泄漏到窃听者,尽管它很少发生。但是,存在一种更安全的量子加密方案,称为量子安全直接通信(QSDC)协议,该方案消除了键,加密和密文传输的必要性。这是一种独特的量子通信方案,其中直接通过量子通信渠道传输秘密信息。我们在该方案中使用了与测量设备无关的(MDI)协议,在该方案中,通信过程中的所有量子状态的测量均由第三方进行,这可能是不受信任甚至是窃听者。这消除了实际测量设备中的所有漏洞。在这里,我们在IBM量子体验平台中使用Bell和GHz状态意识到此MDI-QSDC协议,并实施交换电路以进行安全检查。

Secure cryptographic protocols are indispensable for modern communication systems. It is realized through an encryption process in cryptography. In quantum cryptography, Quantum Key Distribution (QKD) is a widely popular quantum communication scheme that enables two parties to establish a shared secret key that can be used to encrypt and decrypt messages. But security loopholes still exist in this cryptographic protocol, as an eavesdropper can in principle still intercept all the ciphertext to perform cryptanalysis and the key may get leaked to the eavesdropper, although it happens very rarely. However, there exists a more secure quantum cryptographic scheme known as Quantum Secure Direct Communication (QSDC) protocol that eliminates the necessity of key, encryption and ciphertext transmission. It is a unique quantum communication scheme where secret information is transmitted directly over a quantum communication channel. We make use of measurement-device-independent (MDI) protocol in this scheme where all the measurements of quantum states during communication are performed by a third party that can be untrusted or even an eavesdropper. This eliminates all loopholes in practical measurement devices. Here, we realize this MDI-QSDC protocol using Bell and GHZ states in the IBM Quantum Experience platform and implement swapping circuits for security check.

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