Modern computation relies crucially on modular architectures, breaking a complex algorithm into self-contained subroutines. A client can then call upon a remote server to implement parts of the computation independently via an application programming interface (API). Present APIs relay only classical information. Here we implement a quantum API that enables a client to estimate the absolute value of the trace of a server-provided unitary operation [Formula: see text]. We demonstrate that the algorithm functions correctly irrespective of what unitary [Formula: see text] the server implements or how the server specifically realizes [Formula: see text]. Our experiment involves pioneering techniques to coherently swap qubits encoded within the motional states of a trapped [Formula: see text] ion, controlled on its hyperfine state. This constitutes the first demonstration of modular computation in the quantum regime, providing a step towards scalable, parallelization of quantum computation.
Modular quantum computation in a trapped ion system.
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作者:Zhang Kuan, Thompson Jayne, Zhang Xiang, Shen Yangchao, Lu Yao, Zhang Shuaining, Ma Jiajun, Vedral Vlatko, Gu Mile, Kim Kihwan
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2019 | 起止号: | 2019 Oct 16; 10(1):4692 |
| doi: | 10.1038/s41467-019-12643-2 | ||
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