Impact of leakage on the dynamics of a ST$_0$ qubit implemented in a Double Quantum Dot device

Fuente: arXiv
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Hauptverfasser: del Moral, Javier Oliva, Larrarte, Olatz Sanz, Dastbasteh, Reza, Martinez, Josu Etxezarreta, Otxoa, Rubén M.
Format: Preprint
Veröffentlicht: 2024
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author del Moral, Javier Oliva
Larrarte, Olatz Sanz
Dastbasteh, Reza
Martinez, Josu Etxezarreta
Otxoa, Rubén M.
author_facet del Moral, Javier Oliva
Larrarte, Olatz Sanz
Dastbasteh, Reza
Martinez, Josu Etxezarreta
Otxoa, Rubén M.
contents Spin qubits in quantum dots are a promising technology for quantum computing due to their fast response time and long coherence times. An electromagnetic pulse is applied to the system for a specific duration to perform a desired rotation. To avoid decoherence, the amplitude and gate time must be highly accurate. In this work, we aim to study the impact of leakage during the gate time evolution of a spin qubit encoded in a double quantum dot device. We prove that, in the weak interaction regime, leakage introduces a shift in the phase of the time evolution operator, causing over- or under-rotations. Indeed, controlling the leakage terms is useful for adjusting the time needed to perform a quantum computation and increasing the coherence time of the readout process. This is crucial for running fault-tolerant algorithms and is beneficial for Quantum Error Mitigation techniques.
format Preprint
id arxiv_https___arxiv_org_abs_2411_19179
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Impact of leakage on the dynamics of a ST$_0$ qubit implemented in a Double Quantum Dot device
del Moral, Javier Oliva
Larrarte, Olatz Sanz
Dastbasteh, Reza
Martinez, Josu Etxezarreta
Otxoa, Rubén M.
Quantum Physics
Spin qubits in quantum dots are a promising technology for quantum computing due to their fast response time and long coherence times. An electromagnetic pulse is applied to the system for a specific duration to perform a desired rotation. To avoid decoherence, the amplitude and gate time must be highly accurate. In this work, we aim to study the impact of leakage during the gate time evolution of a spin qubit encoded in a double quantum dot device. We prove that, in the weak interaction regime, leakage introduces a shift in the phase of the time evolution operator, causing over- or under-rotations. Indeed, controlling the leakage terms is useful for adjusting the time needed to perform a quantum computation and increasing the coherence time of the readout process. This is crucial for running fault-tolerant algorithms and is beneficial for Quantum Error Mitigation techniques.
title Impact of leakage on the dynamics of a ST$_0$ qubit implemented in a Double Quantum Dot device
topic Quantum Physics
url https://arxiv.org/abs/2411.19179