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5 papers

cond-mat.mes-hall2026

Depth-Resolved Lattice Distortions in a Silicon-Germanium Qubit Host

Jonathan C. Marcks, E. S. Joseph, J. Reily +6

The authors use X‑ray nano‑structural mapping to resolve lattice distortions and strain in a Si/SiGe chip used for quantum dot qubits, revealing how growth‑induced defects propagat…

quant-ph2026

Complete measurement of tunnel- and valley-coupling parameters in a silicon double quantum dot

Daniel J. King, Minyoung Kim, J. Reily +4

Tunneling is essential in the initialization, measurement, and control of quantum dot qubits. In silicon, such tunneling connects not only the qubit states but also valley minima i…

quant-ph2026

Direct measurement of the energy spectrum of a quantum dot qubit

J. Reily, Daniel J. King, Jonathan C. Marcks +8

The mapping between gate voltages applied to a double quantum dot, and the parameters of a Hubbard-like Hamiltonian, is of utmost importance for understanding and operating spin qu…

cond-mat.mes-hall2026

Valley Splitting Correlations Across a Silicon Quantum Well Containing Germanium

Jonathan C. Marcks, Emily Eagen, Emma C. Brann +12

Quantum dots in SiGe/Si/SiGe heterostructures host coherent electron spin qubits, which are promising for future quantum computers. The silicon quantum well hosts near-degenerate e…

cond-mat.mes-hall2025

Fast high-fidelity baseband reset of a latched state for quantum dot qubit readout

Piotr Marciniec, M. A. Wolfe, Tyler Kovach +9

A common method for reading out the state of a spin qubit is by latching one logical qubit state, either or , onto a different, metastable charge state. Such…