Electric-Circuit Realization of Fast Quantum Search
Author(s) -
Naiqiao Pan,
Tian Chen,
Houjun Sun,
Xiangdong Zhang
Publication year - 2021
Publication title -
research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.8
H-Index - 16
ISSN - 2639-5274
DOI - 10.34133/2021/9793071
Subject(s) - quantum computer , computer science , realization (probability) , quantum algorithm , quantum circuit , scalability , quantum , quantum information , electronic circuit , quantum network , search algorithm , theoretical computer science , computer engineering , algorithm , mathematics , physics , quantum mechanics , statistics , database
Quantum search algorithm, which can search an unsorted database quadratically faster than any known classical algorithms, has become one of the most impressive showcases of quantum computation. It has been implemented using various quantum schemes. Here, we demonstrate both theoretically and experimentally that such a fast search algorithm can also be realized using classical electric circuits. The classical circuit networks to perform such a fast search have been designed. It has been shown that the evolution of electric signals in the circuit networks is analogies of quantum particles randomly walking on graphs described by quantum theory. The searching efficiencies in our designed classical circuits are the same to the quantum schemes. Because classical circuit networks possess good scalability and stability, the present scheme is expected to avoid some problems faced by the quantum schemes. Thus, our findings are advantageous for information processing in the era of big data.
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