Focus Session: Semiconductor Qubits - Progress in Si
FOCUS · W26 ·
Presentations
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Robust few-electron quantum dot devices in nuclear spin engineered Si/SiGe
COFFEE_KLATCH · Invited
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Authors
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Dominique Bougeard
- Universitaet Regensburg, Institut fuer Experimentelle und Angewandte Physik, Regensburg, Germany
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\textit{In situ} isotopic enrichment and growth of $^{28}$Si for quantum information
ORAL
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Authors
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Kevin Dwyer
- Materials Science and Engineering, University of Maryland
- National Institute of Standards and Technology
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Joshua Pomeroy
- NIST
- National Institute of Standards and Technology
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Coherence time of the nuclear spin of ionized phosphorus donors in $^{28}$Si at liquid He and room temperature
ORAL
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Authors
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Michael L.W. Thewalt
- Dept. of Physics, Simon Fraser University, Burnaby BC V5A 1S6 Canada
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Kamyar Saeedi
- Dept. of Physics, Simon Fraser University, Burnaby BC V5A 1S6 Canada
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Stephanie Simmons
- Dept. of Materials, Oxford University, Oxford OX1 3PH, UK
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John Morton
- London Centre for Nanotechnology, University College London, London WC1H 0AH, UK
- University College London
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Decoherence of Neutral $^{31}$P Donor Nuclear Spins by $^{29}$Si
ORAL
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Authors
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E.S. Petersen
- Princeton University
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A.M. Tyryshkin
- Princeton University
- Princeton U.
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Stephen Lyon
- Princeton University
- Princeton U.
- Department of Electrical Engineering, Princeton University
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J.J.L. Morton
- University College London
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K.M. Itoh
- Keio University
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M.L.W. Thewalt
- Simon Fraser University
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Spin measurement in an undoped Si/SiGe double quantum dot incorporating a micromagnet
ORAL
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Authors
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Xian Wu
- University of Wisconsin-Madison
- University of Wisconsin - Madison
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Jonathan Prance
- University of Wisconsin-Madison
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Daniel Ward
- University of Wisconsin-Madison
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John Gamble
- University of Wisconsin-Madison
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Donald Savage
- University of Wisconsin-Madison
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Max Lagally
- University of Wisconsin-Madison
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Mark Friesen
- University of Wisconsin-Madison
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Susan Coppersmith
- University of Wisconsin-Madison
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Mark Eriksson
- University of Wisconsin-Madison
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Valley-orbit hybrid states in Si quantum dots
ORAL
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Authors
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John King Gamble
- Department of Physics, University of Wisconsin-Madison, Madison, WI 53706
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Mark Friesen
- Department of Physics, University of Wisconsin-Madison, Madison, WI 53706
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S.N. Coppersmith
- Department of Physics, University of Wisconsin-Madison, Madison, WI 53706
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A new mechanism for spin and valley relaxation in silicon quantum dots
ORAL
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Authors
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Rusko Ruskov
- Laboratory for Physical Sciences, College Park, MD 20740, U.S.A.
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Charles Tahan
- Laboratory for Physical Sciences, College Park, MD 20740, U.S.A.
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ABSTRACT WITHDRAWN
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Interactions and valley-orbit coupling in Si quantum dots
ORAL
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Authors
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Luyao Jiang
- ICQD, University of Science and Technology of China
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C. H. Yang
- University of New South Wales
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Zhaodi Pan
- ICQD, University of Science and Technology of China
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Andrea Morello
- University of New South Wales
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Andrew Dzurak
- University of New South Wales
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Dimitrie Culcer
- ICQD, University of Science and Technology of China
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Genetic Design of Enhanced Valley Splitting towards a Spin Qubit in Silicon
ORAL
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Authors
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Lijun Zhang
- National Renewable Energy Laboratory
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Jun-Wei Luo
- National Renewable Energy Laboratory
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Andre Saraiva
- Universidade Federal do Rio de Janeiro, Brazil
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Belita Koiller
- Universidade Federal do Rio de Janeiro, Brazil
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Alex Zunger
- University of Colorado
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Impact of the valley degree of freedom on the control of donor electrons near a Si/SiO$_2$ interface
ORAL
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Authors
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Andre Saraiva
- Physics Institute, Universidade Federal do Rio de Janeiro
- IF-UFRJ
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Alejandra Baena
- ICMM - CSIC
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Maria J. Calderon
- ICMM - CSIC
- Instituto de Ciencia de Materiales de Madrid, Consejo Superior de Investigaciones Cientificas, ICMM-CSIC (Spain)
- Instituto de Ciencia de Materiales de Madrid, Consejo Superior de Investigaciones Cient\'ificas, ICMM-CSIC (Spain)
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Belita Koiller
- Physics Institute, Universidade Federal do Rio de Janeiro
- IF-UFRJ
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Localization of Si/SiO$_2$ Interface States: Properties and Physical Implications
ORAL
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Authors
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Belita Koiller
- Physics Institute, Universidade Federal do Rio de Janeiro
- IF-UFRJ
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Amintor Dusko
- Physics Institute, Universidade Federal do Rio de Janeiro
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Andre Saraiva
- Physics Institute, Universidade Federal do Rio de Janeiro
- IF-UFRJ
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