Selective Shuttling of Electrons on Helium Using a CMOS Control Platform

Fuente: arXiv
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Hauptverfasser: Castoria, K. E., Byeon, H., Beysengulov, N. R., Glen, E. O., Sammon, M., Pollanen, J., Rees, D. G., Lyon, S. A.
Format: Preprint
Veröffentlicht: 2025
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author Castoria, K. E.
Byeon, H.
Beysengulov, N. R.
Glen, E. O.
Sammon, M.
Pollanen, J.
Rees, D. G.
Lyon, S. A.
author_facet Castoria, K. E.
Byeon, H.
Beysengulov, N. R.
Glen, E. O.
Sammon, M.
Pollanen, J.
Rees, D. G.
Lyon, S. A.
contents Electrons bound to the surface of liquid helium are an emerging quantum computing platform, offering the potential for highly mobile spin qubits that can be manipulated using CMOS-fabricated devices. Here, as a step toward realizing this technology, we demonstrate selective two-dimensional shuttling of electrons across a helium film condensed on the surface of a CMOS control chip. The electrons are moved in packets containing, on average, several tens down to single electrons. We perform CCD-style electron shuttling in any of 128 transport microchannels, each of which links electron storage zones and sensing zones in the 2D plane. Shuttling sequences can be repeated at least 10$^9$ times with no detectable electron loss. The device serves as a prototype quantum information processing platform that is readily scalable to control large monolithically integrated arrays of single electron spins.
format Preprint
id arxiv_https___arxiv_org_abs_2511_15922
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Selective Shuttling of Electrons on Helium Using a CMOS Control Platform
Castoria, K. E.
Byeon, H.
Beysengulov, N. R.
Glen, E. O.
Sammon, M.
Pollanen, J.
Rees, D. G.
Lyon, S. A.
Mesoscale and Nanoscale Physics
Electrons bound to the surface of liquid helium are an emerging quantum computing platform, offering the potential for highly mobile spin qubits that can be manipulated using CMOS-fabricated devices. Here, as a step toward realizing this technology, we demonstrate selective two-dimensional shuttling of electrons across a helium film condensed on the surface of a CMOS control chip. The electrons are moved in packets containing, on average, several tens down to single electrons. We perform CCD-style electron shuttling in any of 128 transport microchannels, each of which links electron storage zones and sensing zones in the 2D plane. Shuttling sequences can be repeated at least 10$^9$ times with no detectable electron loss. The device serves as a prototype quantum information processing platform that is readily scalable to control large monolithically integrated arrays of single electron spins.
title Selective Shuttling of Electrons on Helium Using a CMOS Control Platform
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2511.15922