SUPER and femtosecond spin-conserving coherent excitation of a tin-vacancy color center in diamond

Fuente: arXiv
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Main Authors: Torun, Cem Güney, Gökçe, Mustafa, Bracht, Thomas K., Monsalve, Mariano Isaza, Benbouabdellah, Sarah, Nacitarhan, Özgün Ozan, Stucki, Marco E., Alvaro, Domenica Bermeo, Markham, Matthew L., Pregnolato, Tommaso, Munns, Joseph H. D., Pieplow, Gregor, Reiter, Doris E., Schröder, Tim
Format: Preprint
Published: 2023
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author Torun, Cem Güney
Gökçe, Mustafa
Bracht, Thomas K.
Monsalve, Mariano Isaza
Benbouabdellah, Sarah
Nacitarhan, Özgün Ozan
Stucki, Marco E.
Alvaro, Domenica Bermeo
Markham, Matthew L.
Pregnolato, Tommaso
Munns, Joseph H. D.
Pieplow, Gregor
Reiter, Doris E.
Schröder, Tim
author_facet Torun, Cem Güney
Gökçe, Mustafa
Bracht, Thomas K.
Monsalve, Mariano Isaza
Benbouabdellah, Sarah
Nacitarhan, Özgün Ozan
Stucki, Marco E.
Alvaro, Domenica Bermeo
Markham, Matthew L.
Pregnolato, Tommaso
Munns, Joseph H. D.
Pieplow, Gregor
Reiter, Doris E.
Schröder, Tim
contents The coherent excitation of an optically active spin system is one of the key elements in the engineering of a spin-photon interface. Using the novel SUPER scheme, we coherently control the main optical transition of a tin-vacancy color center in diamond with nonresonant ultrashort optical pulses. Furthermore, we implement a femtosecond control scheme using resonant pulses for achieving record short quantum gates applied to diamond color centers. We simulate the applicability of the SUPER scheme to spin qubits and experimentally investigate spin mixing. Finally, we propose a spin-spin entanglement scheme in a scenario where the excitation with broadband pulses is incompatible with spin-selective excitation. The employed ultrafast quantum gates open up a new regime of quantum control with solid-state color centers, enabling multi-gate operations and efficient spectral filtering of the excitation laser from deterministically prepared coherent photons.
format Preprint
id arxiv_https___arxiv_org_abs_2312_05246
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle SUPER and femtosecond spin-conserving coherent excitation of a tin-vacancy color center in diamond
Torun, Cem Güney
Gökçe, Mustafa
Bracht, Thomas K.
Monsalve, Mariano Isaza
Benbouabdellah, Sarah
Nacitarhan, Özgün Ozan
Stucki, Marco E.
Alvaro, Domenica Bermeo
Markham, Matthew L.
Pregnolato, Tommaso
Munns, Joseph H. D.
Pieplow, Gregor
Reiter, Doris E.
Schröder, Tim
Quantum Physics
The coherent excitation of an optically active spin system is one of the key elements in the engineering of a spin-photon interface. Using the novel SUPER scheme, we coherently control the main optical transition of a tin-vacancy color center in diamond with nonresonant ultrashort optical pulses. Furthermore, we implement a femtosecond control scheme using resonant pulses for achieving record short quantum gates applied to diamond color centers. We simulate the applicability of the SUPER scheme to spin qubits and experimentally investigate spin mixing. Finally, we propose a spin-spin entanglement scheme in a scenario where the excitation with broadband pulses is incompatible with spin-selective excitation. The employed ultrafast quantum gates open up a new regime of quantum control with solid-state color centers, enabling multi-gate operations and efficient spectral filtering of the excitation laser from deterministically prepared coherent photons.
title SUPER and femtosecond spin-conserving coherent excitation of a tin-vacancy color center in diamond
topic Quantum Physics
url https://arxiv.org/abs/2312.05246