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Preprints

Simmons M; Edlbauer H; Wang J; Huq AM; Thorvaldson I; Jones M; Misha AFM; Pappas W; Moehle C; Hsueh Y-L; Bornemann H; Gorman S; Chung Y; Keizer J; Kranz L, 2025, An 11-qubit atom processor in silicon, http://dx.doi.org/10.21203/rs.3.rs-6676321/v1

Schofield SR; Fisher AJ; Ginossar E; Lyding JW; Silver R; Fei F; Namboodiri P; Wyrick J; Masteghin MG; Cox DC; Murdin BN; Clowes SK; Keizer JG; Simmons MY; Stemp HG; Morello A; Voisin B; Rogge S; Wolkow RA; Livadaru L; Pitters J; Stock TJZ; Curson NJ; Butera RE; Pavlova TV; Jakob AM; Spemann D; Räcke P; Schmidt-Kaler F; Jamieson DN; Pratiush U; Duscher G; Kalinin SV; Kazazis D; Constantinou P; Aeppli G; Ekinci Y; Owen JHG; Fowler E; Moheimani SOR; Randall JN; Misra S; Ivie J; Allemang CR; Anderson EM; Bussmann E; Campbell Q; Gao X; Lu T-M; Schmucker SW, 2025, Roadmap on Atomic-scale Semiconductor Devices, http://dx.doi.org/10.1088/2399-1984/ada901

Thorvaldson I; Poulos D; Moehle CM; Misha SH; Edlbauer H; Reiner J; Geng H; Voisin B; Jones MT; Donnelly MB; Pena LF; Hill CD; Myers CR; Keizer JG; Chung Y; Gorman SK; Kranz L; Simmons MY, 2024, Grover's algorithm in a four-qubit silicon processor above the fault-tolerant threshold, http://dx.doi.org/10.1038/s41565-024-01853-5

Donnelly MB; Keizer JG; Chung Y; Simmons MY, 2022, 3-Dimensional Tuning of an Atomically Defined Silicon Tunnel Junction, http://dx.doi.org/10.48550/arxiv.2211.02180

Keith D; Gorman SK; Kranz L; He Y; Keizer JG; Broome MA; Simmons MY, 2018, Benchmarking high fidelity single-shot readout of semiconductor qubits, http://dx.doi.org/10.48550/arxiv.1811.03630

Hile SJ; Fricke L; House MG; Peretz E; Chen CY; Wang Y; Broome M; Gorman SK; Keizer JG; Rahman R; Simmons MY, 2018, Addressable electron spin resonance using donors and donor molecules in silicon, http://dx.doi.org/10.48550/arxiv.1807.10290

Broome MA; Watson TF; Keith D; Gorman SK; House MG; Keizer JG; Hile SJ; Baker W; Simmons MY, 2018, High Fidelity Single-Shot Singlet-Triplet Readout of Precision Placed Donors in Silicon, http://dx.doi.org/10.48550/arxiv.1807.10285

Gorman SK; Broome MA; House MG; Hile SJ; Keizer JG; Keith D; Watson TF; Baker WJ; Simmons MY, 2018, Singlet-triplet minus mixing and relaxation lifetimes in a double donor dot, http://dx.doi.org/10.48550/arxiv.1807.10289

Broome MA; Gorman SK; House MG; Hile SJ; Keizer JG; Keith D; Hill CD; Watson TF; Baker WJ; Hollenberg LCL; Simmons MY, 2018, Two-Electron Spin Correlations in Precision Placed Donors in Silicon, http://dx.doi.org/10.48550/arxiv.1807.10295

Gorman SK; He Y; House MG; Keizer JG; Keith D; Fricke L; Hile SJ; Broome MA; Simmons MY, 2017, Tunneling statistics for analysis of spin-readout fidelity, http://dx.doi.org/10.48550/arxiv.1710.02243

Broome MA; Gorman SK; Keizer JG; Watson TF; Hile SJ; Baker WJ; Simmons MY, 2016, Mapping the Chemical Potential Landscape of a Triple Quantum Dot, http://dx.doi.org/10.48550/arxiv.1609.03381

Gorman SK; Broome MA; Keizer JG; Watson TF; Hile SJ; Baker WJ; Simmons MY, 2016, Extracting inter-dot tunnel couplings between few donor quantum dots in silicon, http://dx.doi.org/10.48550/arxiv.1606.00851

House MG; Peretz E; Keizer JG; Hile SJ; Simmons MY, 2014, Single-charge detection by an atomic precision tunnel junction, http://dx.doi.org/10.48550/arxiv.1403.5320

Jovanov V; Eissfeller T; Kapfinger S; Clark EC; Klotz F; Bichler M; Keizer JG; Koenraad PM; Brandt MS; Abstreiter G; Finley JJ, 2011, Highly Non-linear Excitonic Zeeman Spin-Splitting in Composition-Engineered Artificial Atoms, http://dx.doi.org/10.48550/arxiv.1112.2585

Keizer JG; Bozkurt M; Bocquel J; Koenraad PM; Mano T; Noda T; Sakoda K; Clark EC; Bichler M; Abstreiter G; Finley JJ; Lu W; Rohel T; Folliot H; Bertru N, 2010, Shape control of QDs studied by cross-sectional scanning tunneling microscopy, http://dx.doi.org/10.48550/arxiv.1011.3316

Giddings AD; Keizer JG; Hara M; Hamhuis GJ; Yuasa H; Fukuzawa H; Koenraad PM, 2010, Composition profiling InAs quantum dots and wetting layers by atom probe tomography and cross-sectional scanning tunnelling microscopy, http://dx.doi.org/10.48550/arxiv.1010.5888


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