AS

Andre Saraiva

cond-mat.mes-hallquant-phsiliconcond-mat.mtrl-scicharge sensingCMOScond-mat.str-elQuantum computingquantum dotscharge pump

On Valency

published · living versions
W_qszyds88·v1 · currentpublished
Competitive Programming with Large Reasoning Models
with OpenAI, :, Ahmed El-Kishky, Alexander Wei +21
1 version

Preprints & journals

90 papers in the corpus · 2007–2026
Scalable Quantum Current Source on Commercial CMOS Process Technology.42342333 · Dash, Ajit, Tripathi, Suyash Pati, Georgakopoulos, Dimitrios et al.2026 · 0 citationsNano letters. 2026;26(26):8505-8512
Impact of electrostatic crosstalk on spin qubits in dense CMOS quantum dot arrays2309.01849v1 · Jesus D. Cifuentes, Tuomo Tanttu, Paul Steinacker et al.2023 · 12 citationsarXiv
Violating Bell's inequality in gate-defined quantum dots2407.15778v2 · Paul Steinacker, Tuomo Tanttu, Wee Han Lim et al.2024 · 12 citationsarXiv
A 300 mm foundry silicon spin qubit unit cell exceeding 99% fidelity in all operations2410.15590v2 · Paul Steinacker, Nard Dumoulin Stuyck, Wee Han Lim et al.2024 · 55 citationsarXiv
Coupling a $^{73}$Ge nuclear spin to an electrostatically defined quantum dot2510.03981v1 · Paul Steinacker, Gauri Goenka, Rocky Yue Su et al.2025 · 0 citationsarXiv
CMOS compatibility of semiconductor spin qubits2409.03993v1 · Nard Dumoulin Stuyck, Andre Saraiva, Will Gilbert et al.2024 · 4 citationsarXiv
Interplay of Zeeman Splitting and Tunnel Coupling in Coherent Spin Qubit Shuttling2507.15554v3 · Ssu-Chih Lin, Paul Steinacker, MengKe Feng et al.2025 · 3 citationsPhys. Rev. Applied 25, 034016 (2026)
Mid-circuit logic executed in the qubit layer of a quantum processor2512.12648v2 · Cameron Jones, Piper Wysocki, MengKe Feng et al.2025 · 1 citationarXiv
Effect of disorder and strain on the operation of planar Ge hole spin qubits2502.06949v2 · Abhikbrata Sarkar, Pratik Chowdhury, Xuedong Hu et al.2025 · 2 citationsnpj Quantum Information 11, 185 (2025)
Enhancement of Electric Drive in Silicon Quantum Dots with Electric Quadrupole Spin Resonance2502.01040v3 · Philip Y. Mai, Pedro H. Pereira, Lucas Andrade Alonso et al.2025 · 1 citationarXiv
Scalable quantum current source on commercial CMOS process technology2506.15956v2 · Ajit Dash, Suyash Pati Tripathi, Dimitrios Georgakopoulos et al.2025 · 0 citationsarXiv
A 2x2 quantum dot array in silicon with fully tuneable pairwise interdot coupling2411.13882v3 · Wee Han Lim, Tuomo Tanttu, Tony Youn et al.2024 · 5 citationsarXiv
Wavelet correlation noise analysis for qubit operation variable time series2309.12542v3 · Amanda E. Seedhouse, Nard Dumoulin Stuyck, Santiago Serrano et al.2023 · 4 citationsScientific Reports volume 15, Article number: 11065 (2025)
Assessment of error variation in high-fidelity two-qubit gates in silicon2303.04090v3 · Tuomo Tanttu, Wee Han Lim, Jonathan Y. Huang et al.2023 · 65 citationsNat. Phys. 6 (2024)
Real-time feedback protocols for optimizing fault-tolerant two-qubit gate fidelities in a silicon spin system2309.12541v1 · Nard Dumoulin Stuyck, Amanda E. Seedhouse, Santiago Serrano et al.2023 · 3 citationsAppl. Phys. Lett. 124, 114003 (2024)
Entangling gates on degenerate spin qubits dressed by a global field2311.09567v2 · Ingvild Hansen, Amanda E. Seedhouse, Santiago Serrano et al.2023 · 9 citationsNature Communications 15, 7656 (2024)
Electronic Correlations in Multielectron Silicon Quantum Dots2407.04289v1 · Dylan H. Liang, MengKe Feng, Philip Y. Mai et al.2024 · 1 citation2024 IEEE 24th International Conference on Nanotechnology (NANO), Gijon, Spain, 2024, pp. 527-532
Bounds to electron spin qubit variability for scalable CMOS architectures2303.14864v3 · Jes'us D. Cifuentes, Tuomo Tanttu, Will Gilbert et al.2023 · 33 citationsNat Commun 15, 4299 (2024)
Electrical operation of hole spin qubits in planar MOS silicon quantum dots2309.12243v1 · Zhanning Wang, Abhikbrata Sarkar, S. D. Liles et al.2023 · 16 citationsarXiv
High-fidelity operation and algorithmic initialisation of spin qubits above one kelvin2308.02111v2 · Jonathan Y. Huang, Rocky Y. Su, Wee Han Lim et al.2023 · 103 citationsNature 627, 772-777 (2024)
Silicon charge pump operation limit above and below liquid helium temperature2309.05896v1 · Ajit Dash, Steve Yianni, MengKe Feng et al.2023 · 2 citationsarXiv
Control of dephasing in spin qubits during coherent transport in silicon2207.11865v2 · MengKe Feng, Jun Yoneda, Wister Huang et al.2022 · 9 citationsarXiv
Improved Single-Shot Qubit Readout Using Twin RF-SET Charge Correlations2307.07724v1 · Santiago Serrano, MengKe Feng, Wee Han Lim et al.2023 · 7 citationsPRX QUANTUM 5, 010301 (2024)
Lifting of Spin Blockade by Charged Impurities in Si-MOS Double Quantum Dot Devices1807.11064v3 · Evelyn King, Joshua S. Schoenfield, M.J. Calder'on et al.2018 · 7 citationsPhys. Rev. B 101, 155411 (2020)
Electrical operation of planar Ge hole spin qubits in an in-plane magnetic field2307.01451v1 · Abhikbrata Sarkar, Zhanning Wang, Mathew Rendell et al.2023 · 33 citationsPhysical Review B 108, 245301 (2023)
Path integral simulation of exchange interactions in CMOS spin qubits2307.03455v3 · Jes'us D. Cifuentes, Philip Y. Mai, Fr'ed'eric Schlattner et al.2023 · 6 citationsarXiv
Accessing the Full Capabilities of Filter Functions: A Tool for Detailed Noise and Control Susceptibility Analysis2303.01660v1 · Ingvild Hansen, Amanda E. Seedhouse, Andre Saraiva et al.2023 · 2 citationsPhys. Rev. A 108, 012426 (2023)
Dispersively detected Pauli Spin-Blockade in a Silicon Nanowire Field-Effect Transistor1504.02997v2 · A. C. Betz, R. Wacquez, M. Vinet et al.2015 · 89 citationsarXiv
Jellybean quantum dots in silicon for qubit coupling and on-chip quantum chemistry2208.04724v1 · Zeheng Wang, MengKe Feng, Santiago Serrano et al.2022 · 20 citationsarXiv
The dawn of error correction with spin qubits.36376553 · Saraiva, Andre, Bartlett, Stephen D2023 · 1 citationNature materials. 2023;22(2):157-158
On-demand electrical control of spin qubits2201.06679v2 · Will Gilbert, Tuomo Tanttu, Wee Han Lim et al.2022 · 61 citationsNature Nanotechnology (2023)
Coherent control of electron spin qubits in silicon using a global field2107.14622v2 · E. Vahapoglu, J. P. Slack-Smith, R. C. C. Leon et al.2021 · 42 citationsnpj Quantum Information 8, 126 (2022)
Implementation of the SMART protocol for global qubit control in silicon2108.00836v3 · Ingvild Hansen, Amanda E. Seedhouse, Kok Wai Chan et al.2021 · 41 citationsApplied Physics Reviews 9, 031409 (2022)
Indirect Control of the $\rm {}^{29}SiV^{-}$ Nuclear Spin in Diamond2203.10283v2 · Hyma H. Vallabhapurapu, Chris Adambukulam, Andre Saraiva et al.2022 · 6 citationsarXiv
Development of an Undergraduate Quantum Engineering Degree2110.12598v1 · A. S. Dzurak, J. Epps, A. Laucht et al.2021 · 27 citationsPublished Version: IEEE Transactions on Quantum Engineering, Volume 3, pages 1-10, (ISSN 2689-1808), 2022
Fast Bayesian tomography of a two-qubit gate set in silicon2107.14473v1 · T. J. Evans, W. Huang, J. Yoneda et al.2021 · 20 citationsPhys. Rev. Applied 17, 024068 (2022)
Quantum Computation Protocol for Dressed Spins in a Global Field2108.00798v2 · Amanda E. Seedhouse, Ingvild Hansen, Arne Laucht et al.2021 · 42 citationsPhys. Rev. B 104, 235411 (2021)
The SMART protocol -- Pulse engineering of a global field for robust and universal quantum computation2108.00776v3 · Ingvild Hansen, Amanda E. Seedhouse, Andre Saraiva et al.2021 · 50 citationsPhys. Rev. A 104, 062415 (2021)
Full configuration interaction simulations of exchange-coupled donors in silicon using multi-valley effective mass theory2012.06293v1 · Benjamin Joecker, Andrew D. Baczewski, John K. Gamble et al.2020 · 22 citationsarXiv
Materials for Silicon Quantum Dots and their Impact on Electron Spin Qubits2107.13664v2 · Andre Saraiva, Wee Han Lim, Chih Hwan Yang et al.2021 · 67 citationsarXiv
A high-sensitivity charge sensor for silicon qubits above one kelvin2103.06433v2 · Jonathan Y. Huang, Wee Han Lim, Ross C. C. Leon et al.2021 · 16 citationsNano Letters v12, 6328 (2021)
Coherent spin qubit transport in silicon2008.04020v2 · J. Yoneda, W. Huang, M. Feng et al.2020 · 112 citationsNature Communications 12, 4114 (2021)
Bell-state tomography in a silicon many-electron artificial molecule2008.03968v1 · Ross C. C. Leon, Chih Hwan Yang, Jason C. C. Hwang et al.2020 · 29 citationsNature Communications 12, 3228 (2021)
Pauli Blockade in Silicon Quantum Dots with Spin-Orbit Control2004.07078v3 · Amanda Seedhouse, Tuomo Tanttu, Ross C. C. Leon et al.2020 · 98 citationsPRX Quantum 2, 010303 (2021)
Theory of Hole-Spin Qubits in Strained Germanium Quantum Dots1803.10320v5 · L. A. Terrazos, E. Marcellina, Zhanning Wang et al.2018 · 114 citationsPhys. Rev. B 103, 125201 (2021)
Exchange coupling in a linear chain of three quantum-dot spin qubits in silicon2004.07666v1 · Kok Wai Chan, Harshad Sahasrabudhe, Wister Huang et al.2020 · 40 citationsNano Letters 2021, 21, 3, 1517-1522
Single-electron operation of a silicon-CMOS 2x2 quantum dot array with integrated charge sensing2004.11558v1 · Will Gilbert, Andre Saraiva, Wee Han Lim et al.2020 · 43 citationsNano Lett. 2020, 20, 11, 7882-7888
Silicon quantum processor unit cell operation above one Kelvin1902.09126v2 · C. H. Yang, R. C. C. Leon, J. C. C. Hwang et al.2019 · 386 citationsNature 580, 350-354 (2020)
Coherent spin control of s-, p-, d- and f-electrons in a silicon quantum dot1902.01550v3 · R. C. C. Leon, C. H. Yang, J. C. C. Hwang et al.2019 · 90 citationsNature Communications 11, 797 (2020)
Career total: 124 works. 90 are in this corpus.Showing the 50 most recent.

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