Hybrid circuits on planar Germanium

Sagi O. 2024. Hybrid circuits on planar Germanium. Institute of Science and Technology Austria.

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Thesis | PhD | Published | English

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Series Title
ISTA Thesis
Abstract
The new era of Ge has opened up new possibilities in quantum computing. The maturity of Ge spin qubits is unquestioned, while hybrid semiconductor-superconductor Ge circuits are on track to enter the game. Gate-tunable transmons (gatemons) employing semiconductor Josephson junctions have recently emerged as building blocks for such hybrid quantum circuits. In this thesis, we present a gatemon fabricated in planar Germanium. We induce superconductivity in a two-dimensional hole gas by evaporating aluminum atop a thin spacer, which separates the superconductor from the Ge quantum well. The Josephson junction is then integrated into an Xmon circuit and capacitively coupled to a transmission line resonator. We showcase the qubit tunability in a broad frequency range with resonator and two-tone spectroscopy. Time-domain characterizations reveal energy relaxation and coherence times up to 75 ns. Our results, combined with the recent advances in the spin qubit field, pave the way towards novel hybrid and protected qubits in a group IV, CMOS-compatible material.
Publishing Year
Date Published
2024-09-18
Publisher
Institute of Science and Technology Austria
Page
111
ISSN
IST-REx-ID

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Sagi O. Hybrid circuits on planar Germanium. 2024. doi:10.15479/at:ista:18076
Sagi, O. (2024). Hybrid circuits on planar Germanium. Institute of Science and Technology Austria. https://doi.org/10.15479/at:ista:18076
Sagi, Oliver. “Hybrid Circuits on Planar Germanium.” Institute of Science and Technology Austria, 2024. https://doi.org/10.15479/at:ista:18076.
O. Sagi, “Hybrid circuits on planar Germanium,” Institute of Science and Technology Austria, 2024.
Sagi O. 2024. Hybrid circuits on planar Germanium. Institute of Science and Technology Austria.
Sagi, Oliver. Hybrid Circuits on Planar Germanium. Institute of Science and Technology Austria, 2024, doi:10.15479/at:ista:18076.
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