Buhrman H, Cleve R, Watrous J, de Wolf R
CWI, P.O. Box 94709, Amsterdam, The Netherlands.
Phys Rev Lett. 2001 Oct 15;87(16):167902. doi: 10.1103/PhysRevLett.87.167902. Epub 2001 Sep 26.
Classical fingerprinting associates with each string a shorter string (its fingerprint), such that any two distinct strings can be distinguished with small error by comparing their fingerprints alone. The fingerprints cannot be made exponentially smaller than the original strings unless the parties preparing the fingerprints have access to correlated random sources. We show that fingerprints consisting of quantum information can be made exponentially smaller than the original strings without any correlations or entanglement between the parties. This implies an exponential quantum/classical gap for the equality problem in the simultaneous message passing model of communication complexity.
经典指纹识别为每个字符串关联一个更短的字符串(其指纹),这样仅通过比较它们的指纹,就能以较小误差区分任意两个不同的字符串。除非准备指纹的各方能够访问相关的随机源,否则指纹不能比原始字符串指数级地更短。我们表明,由量子信息组成的指纹可以比原始字符串指数级地更短,而各方之间无需任何相关性或纠缠。这意味着在通信复杂性的同时消息传递模型中,对于相等性问题存在指数级的量子/经典差距。