A Spin-Photon Interface in the Telecom C-Band with Long Hole Spin Dephasing Time

Fuente: arXiv
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Main Authors: Michl, Johannes M., Hekmati, Reza, Helal, Mohamed, Peniakov, Giora, Reum, Yorick, Kaupp, Jochen, Buchinger, Quirin, Kim, Jaewon, Pfenning, Andreas T., Cho, Yong-Hoon, Höfling, Sven, Huber-Loyola, Tobias
Format: Preprint
Published: 2025
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author Michl, Johannes M.
Hekmati, Reza
Helal, Mohamed
Peniakov, Giora
Reum, Yorick
Kaupp, Jochen
Buchinger, Quirin
Kim, Jaewon
Pfenning, Andreas T.
Cho, Yong-Hoon
Höfling, Sven
Huber-Loyola, Tobias
author_facet Michl, Johannes M.
Hekmati, Reza
Helal, Mohamed
Peniakov, Giora
Reum, Yorick
Kaupp, Jochen
Buchinger, Quirin
Kim, Jaewon
Pfenning, Andreas T.
Cho, Yong-Hoon
Höfling, Sven
Huber-Loyola, Tobias
contents Matter qubits that maintain coherence over extended timescales are essential for many pursued applications in quantum communication and quantum computing. Significant progress has already been made on extending coherence times of spins in semiconductor quantum dots while interfacing them with photons in the near-infrared wavelength range. However, similar results for quantum dots emitting at the telecom range, crucial for many applications, have so far lagged behind. Here, we report on InAs/InAlGaAs quantum dots integrated in a deterministically placed circular Bragg grating emitting at $1.55\,μ\mathrm{m}$. We quantify the g-factors of electrons and holes from polarization-resolved measurements of a positive trion in an in-plane magnetic field and study the dynamics of the ground-state hole spin qubit. We then herald the hole spin in a pulsed two-photon correlation measurement and determine its inhomogeneous dephasing time to $T_{2}^{*}=(15.9 \pm 1.7)$ ns.
format Preprint
id arxiv_https___arxiv_org_abs_2512_19561
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle A Spin-Photon Interface in the Telecom C-Band with Long Hole Spin Dephasing Time
Michl, Johannes M.
Hekmati, Reza
Helal, Mohamed
Peniakov, Giora
Reum, Yorick
Kaupp, Jochen
Buchinger, Quirin
Kim, Jaewon
Pfenning, Andreas T.
Cho, Yong-Hoon
Höfling, Sven
Huber-Loyola, Tobias
Quantum Physics
Matter qubits that maintain coherence over extended timescales are essential for many pursued applications in quantum communication and quantum computing. Significant progress has already been made on extending coherence times of spins in semiconductor quantum dots while interfacing them with photons in the near-infrared wavelength range. However, similar results for quantum dots emitting at the telecom range, crucial for many applications, have so far lagged behind. Here, we report on InAs/InAlGaAs quantum dots integrated in a deterministically placed circular Bragg grating emitting at $1.55\,μ\mathrm{m}$. We quantify the g-factors of electrons and holes from polarization-resolved measurements of a positive trion in an in-plane magnetic field and study the dynamics of the ground-state hole spin qubit. We then herald the hole spin in a pulsed two-photon correlation measurement and determine its inhomogeneous dephasing time to $T_{2}^{*}=(15.9 \pm 1.7)$ ns.
title A Spin-Photon Interface in the Telecom C-Band with Long Hole Spin Dephasing Time
topic Quantum Physics
url https://arxiv.org/abs/2512.19561