Implementation of scalable suspended superinductors

Fuente: arXiv
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Main Authors: Jünger, Christian, Chistolini, Trevor, Nguyen, Long B., Kim, Hyunseong, Chen, Larry, Ersevim, Thomas, Livingston, William, Koolstra, Gerwin, Santiago, David I., Siddiqi, Irfan
Format: Preprint
Published: 2024
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author Jünger, Christian
Chistolini, Trevor
Nguyen, Long B.
Kim, Hyunseong
Chen, Larry
Ersevim, Thomas
Livingston, William
Koolstra, Gerwin
Santiago, David I.
Siddiqi, Irfan
author_facet Jünger, Christian
Chistolini, Trevor
Nguyen, Long B.
Kim, Hyunseong
Chen, Larry
Ersevim, Thomas
Livingston, William
Koolstra, Gerwin
Santiago, David I.
Siddiqi, Irfan
contents Superinductors have become a crucial component in the superconducting circuit toolbox, playing a key role in the development of more robust qubits. Enhancing the performance of these devices can be achieved by suspending the superinductors from the substrate, thereby reducing stray capacitance. Here, we present a fabrication framework for constructing superconducting circuits with suspended superinductors in planar architectures. To validate the effectiveness of this process, we systematically characterize both resonators and qubits with suspended arrays of Josephson junctions, ultimately confirming the high quality of the superinductive elements. In addition, this process is broadly compatible with other types of superinductors and circuit designs. Our results not only pave the way for scalable novel superconducting architectures but also provide the primitive for future investigation of loss mechanisms associated with the device substrate.
format Preprint
id arxiv_https___arxiv_org_abs_2411_10396
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Implementation of scalable suspended superinductors
Jünger, Christian
Chistolini, Trevor
Nguyen, Long B.
Kim, Hyunseong
Chen, Larry
Ersevim, Thomas
Livingston, William
Koolstra, Gerwin
Santiago, David I.
Siddiqi, Irfan
Quantum Physics
Superinductors have become a crucial component in the superconducting circuit toolbox, playing a key role in the development of more robust qubits. Enhancing the performance of these devices can be achieved by suspending the superinductors from the substrate, thereby reducing stray capacitance. Here, we present a fabrication framework for constructing superconducting circuits with suspended superinductors in planar architectures. To validate the effectiveness of this process, we systematically characterize both resonators and qubits with suspended arrays of Josephson junctions, ultimately confirming the high quality of the superinductive elements. In addition, this process is broadly compatible with other types of superinductors and circuit designs. Our results not only pave the way for scalable novel superconducting architectures but also provide the primitive for future investigation of loss mechanisms associated with the device substrate.
title Implementation of scalable suspended superinductors
topic Quantum Physics
url https://arxiv.org/abs/2411.10396