Heo Jino, Won Kitak, Yang Hyung-Jin, Hong Jong-Phil, Choi Seong-Gon
College of Electrical and Computer Engineering, Chungbuk National University, Chungdae-ro 1, Seowon-Gu, Cheongju, Republic of Korea.
Program in Bio-medical Science, Korea University, Sejong, 30019, Republic of Korea.
Sci Rep. 2019 Aug 27;9(1):12440. doi: 10.1038/s41598-019-48695-z.
We propose an optical scheme of discrete quantum Fourier transform (DQFT) via ancillary systems using quantum dots (QDs) confined in single-sided cavities (QD-cavity systems). In our DQFT scheme, the main component is a controlled-rotation k (CRk) gate, which utilizes the interactions between photons and QDs, consisting of two QD-cavity systems. Since the proposed CRk gate can be experimentally implemented with high efficiency and reliable performance, the scalability of multi-qubit DQFT scheme can also be realized through the simple composition of the proposed CRk gates via the QD-cavity systems. Subsequently, in order to demonstrate the performance of the CRk gate, we analyze the interaction between a photon and a QD-cavity system, and then indicate the condition to be efficient CRk gate with feasibility under vacuum noise and sideband leakage.
我们提出了一种通过使用限制在单侧腔中的量子点(量子点 - 腔系统)的辅助系统来实现离散量子傅里叶变换(DQFT)的光学方案。在我们的DQFT方案中,主要组件是一个受控旋转k(CRk)门,它利用光子与量子点之间的相互作用,由两个量子点 - 腔系统组成。由于所提出的CRk门可以通过实验高效且可靠地实现,多量子比特DQFT方案的可扩展性也可以通过经由量子点 - 腔系统简单组合所提出的CRk门来实现。随后,为了证明CRk门的性能,我们分析了光子与量子点 - 腔系统之间的相互作用,然后指出在真空噪声和边带泄漏情况下成为高效CRk门的条件及其可行性。