Overcoming the Hong-Ou-Mandel interference limitation for the second photon from a two-photon cascade
Abstract
Quantum emitters such as semiconductor quantum dots can provide entangled photon pairs emitting from a system of cascaded states. However, the resulting temporal correlation between the two photons from the three-level ladder system has been shown to set a limit on the achievable two-photon interference. In this work, we show that such limitation, for photons emitted by the second transition, is only due to reduced temporal overlap at the interference beam splitter. We investigate this theoretic...
Description / Details
Quantum emitters such as semiconductor quantum dots can provide entangled photon pairs emitting from a system of cascaded states. However, the resulting temporal correlation between the two photons from the three-level ladder system has been shown to set a limit on the achievable two-photon interference. In this work, we show that such limitation, for photons emitted by the second transition, is only due to reduced temporal overlap at the interference beam splitter. We investigate this theoretically and experimentally by determining time-resolved four-photon coincidences between two successively emitted photon pairs. Post-emission synchronization shows the recovery of maximum interference visibility; in prospective quantum networks this could be achieved via deterministic quantum memories.
Source: arXiv:2609.24858v1 - http://arxiv.org/abs/2609.24858v1 PDF: https://arxiv.org/pdf/2609.24858v1 Original Link: http://arxiv.org/abs/2609.24858v1
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Sep 22, 2026
Quantum Computing
Quantum Physics
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