Mode-Manipulated Multimode Cavity for Quantum Memory

In this article, a quasi-elliptical geometry and the iris technique are applied to a multimode cavity to manipulate the resonant mode in the desired direction for quantum memories. By applying quasi-elliptical geometry, the characteristics of monotonically increasing, equally spaced, and monotonical...

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Main Authors: Tae Hwan Jang, Jaehyeong Lee, Jaeho Shin, Jinhyoun Kang, Sungho Han, Insu Jeon, Srivatsan Chakram, David I. Schuster, Hyeokshin Kwon
Format: Article
Language:English
Published: IEEE 2022-01-01
Series:IEEE Transactions on Quantum Engineering
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9895298/
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author Tae Hwan Jang
Jaehyeong Lee
Jaeho Shin
Jinhyoun Kang
Sungho Han
Insu Jeon
Srivatsan Chakram
David I. Schuster
Hyeokshin Kwon
author_facet Tae Hwan Jang
Jaehyeong Lee
Jaeho Shin
Jinhyoun Kang
Sungho Han
Insu Jeon
Srivatsan Chakram
David I. Schuster
Hyeokshin Kwon
author_sort Tae Hwan Jang
collection DOAJ
description In this article, a quasi-elliptical geometry and the iris technique are applied to a multimode cavity to manipulate the resonant mode in the desired direction for quantum memories. By applying quasi-elliptical geometry, the characteristics of monotonically increasing, equally spaced, and monotonically decreasing frequency intervals between the modes are realized. To manipulate a certain mode, an iris is applied to the multimode storage cavity. As an example, the entire mode, including the readout cavity, is implemented at equal intervals to minimize the interference and maximize the mode number from adjacent modes for the 5–8 GHz frequency band.
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spelling doaj.art-2f8c2161ad3d4292a94f8609313f28832022-12-22T02:35:09ZengIEEEIEEE Transactions on Quantum Engineering2689-18082022-01-01311010.1109/TQE.2022.32079019895298Mode-Manipulated Multimode Cavity for Quantum MemoryTae Hwan Jang0https://orcid.org/0000-0002-7004-3423Jaehyeong Lee1Jaeho Shin2https://orcid.org/0000-0002-8415-4634Jinhyoun Kang3Sungho Han4Insu Jeon5Srivatsan Chakram6David I. Schuster7Hyeokshin Kwon8https://orcid.org/0000-0002-5357-1830Samsung Advanced Institute of Technology, Suwon-si, South KoreaSamsung Advanced Institute of Technology, Suwon-si, South KoreaSamsung Advanced Institute of Technology, Suwon-si, South KoreaSamsung Advanced Institute of Technology, Suwon-si, South KoreaSamsung Advanced Institute of Technology, Suwon-si, South KoreaSamsung Advanced Institute of Technology, Suwon-si, South KoreaDepartment of Physics, Rutgers University, Piscataway, NJ, USADepartment of Physics, University of Chicago, Chicago, IL, USASamsung Advanced Institute of Technology, Suwon-si, South KoreaIn this article, a quasi-elliptical geometry and the iris technique are applied to a multimode cavity to manipulate the resonant mode in the desired direction for quantum memories. By applying quasi-elliptical geometry, the characteristics of monotonically increasing, equally spaced, and monotonically decreasing frequency intervals between the modes are realized. To manipulate a certain mode, an iris is applied to the multimode storage cavity. As an example, the entire mode, including the readout cavity, is implemented at equal intervals to minimize the interference and maximize the mode number from adjacent modes for the 5–8 GHz frequency band.https://ieeexplore.ieee.org/document/9895298/Cavityfrequency spectrumirismultimode cavityquantum memory
spellingShingle Tae Hwan Jang
Jaehyeong Lee
Jaeho Shin
Jinhyoun Kang
Sungho Han
Insu Jeon
Srivatsan Chakram
David I. Schuster
Hyeokshin Kwon
Mode-Manipulated Multimode Cavity for Quantum Memory
IEEE Transactions on Quantum Engineering
Cavity
frequency spectrum
iris
multimode cavity
quantum memory
title Mode-Manipulated Multimode Cavity for Quantum Memory
title_full Mode-Manipulated Multimode Cavity for Quantum Memory
title_fullStr Mode-Manipulated Multimode Cavity for Quantum Memory
title_full_unstemmed Mode-Manipulated Multimode Cavity for Quantum Memory
title_short Mode-Manipulated Multimode Cavity for Quantum Memory
title_sort mode manipulated multimode cavity for quantum memory
topic Cavity
frequency spectrum
iris
multimode cavity
quantum memory
url https://ieeexplore.ieee.org/document/9895298/
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