Effects of the Exciton Fine Structure Splitting on the Entanglement-Based Quantum Key Distribution

IF 1.9 Q3 PHYSICS, CONDENSED MATTER Condensed Matter Pub Date : 2023-10-10 DOI:10.3390/condmat8040090
Adrián Felipe Hernández-Borda, María Paula Rojas-Sepúlveda, Hanz Yecid Ramírez-Gómez
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Abstract

The reliable transmission of secure keys is one of the essential tasks to be efficiently accomplished by quantum information processing, and the use of entangled particles is a very important tool toward that goal. However, efficient production of maximally entangled states is still a challenge for further progress in quantum computing and quantum communication. In the search for optimal sources of entanglement, quantum dots have emerged as promising candidates, but the presence of dephasing in the generated entangled states raises questions about their real usefulness in large-scale quantum networks. In this work, we evaluate the effects of the exciton fine structure splitting, present in most quantum dot samples, on the fidelity of the BBM92 protocol for quantum key distribution. We find that the protocol’s performance is heavily impacted by such splitting and establish an upper limit for the product between the energy splitting and the exciton lifetime to have a dependable distributed key.
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激子精细结构分裂对基于纠缠态的量子密钥分配的影响
安全密钥的可靠传输是量子信息处理要高效完成的重要任务之一,而使用纠缠粒子是实现这一目标的重要工具。然而,最大纠缠态的高效产生仍然是量子计算和量子通信进一步发展的挑战。在寻找最佳纠缠源的过程中,量子点已经成为有希望的候选者,但是在产生的纠缠态中存在的去相态提出了它们在大规模量子网络中真正有用的问题。在这项工作中,我们评估了存在于大多数量子点样品中的激子精细结构分裂对量子密钥分发BBM92协议保真度的影响。我们发现这种分裂严重影响了协议的性能,并建立了能量分裂与激子寿命之间的乘积的上限,以获得可靠的分布式密钥。
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来源期刊
Condensed Matter
Condensed Matter PHYSICS, CONDENSED MATTER-
CiteScore
2.90
自引率
11.80%
发文量
58
审稿时长
10 weeks
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