Department of Physics, University of Queensland, St Lucia, Queensland 4072, Australia.
Phys Rev Lett. 2010 Sep 10;105(11):110501. doi: 10.1103/PhysRevLett.105.110501. Epub 2010 Sep 8.
We consider the security of continuous-variable quantum cryptography as we approach the classical limit, i.e., when the unknown preparation noise at the sender's station becomes significantly noisy or thermal (even by as much as 10(4) times greater than the variance of the vacuum mode). We show that, provided the channel transmission losses do not exceed 50%, the security of quantum cryptography is not dependent on the channel transmission, and is therefore incredibly robust against significant amounts of excess preparation noise. We extend these results to consider for the first time quantum cryptography at wavelengths considerably longer than optical and find that regions of security still exist all the way down to the microwave.
当我们接近经典极限时,即当发送方站的未知准备噪声变得明显嘈杂或热(甚至比真空模式的方差大 10(4)倍)时,我们会考虑连续变量量子密码术的安全性。我们表明,只要信道传输损耗不超过 50%,量子密码术的安全性就不依赖于信道传输,因此对大量额外的准备噪声具有难以置信的鲁棒性。我们将这些结果扩展到首次考虑比光学波长长得多的量子密码术,并发现安全区域一直存在到微波。