Germanium wafers for strained quantum wells with low disorder

Author:

Stehouwer Lucas E. A.1ORCID,Tosato Alberto1,Degli Esposti Davide1ORCID,Costa Davide1,Veldhorst Menno1ORCID,Sammak Amir2,Scappucci Giordano1ORCID

Affiliation:

1. QuTech and Kavli Institute of Nanoscience, Delft University of Technology 1 , Lorentzweg 1, 2628 CJ Delft, The Netherlands

2. QuTech and Netherlands Organisation for Applied Scientific Research (TNO) 2 , Stieltjesweg 1, 2628 CK Delft, The Netherlands

Abstract

We grow strained Ge/SiGe heterostructures by reduced-pressure chemical vapor deposition on 100 mm Ge wafers. The use of Ge wafers as substrates for epitaxy enables high-quality Ge-rich SiGe strain-relaxed buffers with a threading dislocation density of (6±1)×105 cm−2, nearly an order of magnitude improvement compared to control strain-relaxed buffers on Si wafers. The associated reduction in short-range scattering allows for a drastic improvement of the disorder properties of the two-dimensional hole gas, measured in several Ge/SiGe heterostructure field-effect transistors. We measure an average low percolation density of (1.22±0.03)×1010 cm−2 and an average maximum mobility of (3.4±0.1)×106 cm2/Vs and quantum mobility of (8.4±0.5)×104 cm2/Vs when the hole density in the quantum well is saturated to (1.65±0.02)×1011 cm−2. We anticipate immediate application of these heterostructures for next-generation, higher-performance Ge spin-qubits, and their integration into larger quantum processors.

Funder

Nederlandse Organisatie voor Wetenschappelijk Onderzoek

HORIZON EUROPE European Research Council

Publisher

AIP Publishing

Subject

Physics and Astronomy (miscellaneous)

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