Accès ouvert déclaré
2026
preprint
A digitally controlled silicon quantum processing unit
Members of the HRL Quantum Team, Collaborators, :, Michaël Abraham, Edwin Acuna, Tower S. Adams, Moonmoon Akmal, Matthew R. Alfaro, I. Alvarado, Jacob Amontree, Carter Andrews, Reed W. Andrews, Michael Antcliffe, Andre R. Aséncio, Ryan M. Avila Batres, C. Baringer, David W. Barnes, Katherine M. Beech, Russell G. Blakey, Zachery T. Bloom, Aaron J. Bluestone, Jacob Blumoff, Matthew Borselli, Koel A. Bose, Brydon Boyd, Jacob T. Boyer, T. Brecht, Christopher C. Brough, Rex A. Brown, Steven L. Brown, Tyler A. Cain, John B. Carpenter, Stephen Carr, Faustin W. Carter, Mitchell Casanova, Jacob L. Chambers, M.D. Chambers, Khamsorn L. Chanthavong, James M. Chappell, Rhian Chavez, Kevin C. Chen, Peter Baile Chen, Maxwell D. Choi, Krishna Choudhary, Matthew N. H. Chow, Justin Christensen, Aaron M. Chronister, Andrew M. Clapper, Abigail A. Coker, Michael D. Cornelius, A.E. Cosand, I. Counts, Edward T. Croke, Gregory M. Crosswhite, A. Dally, Erik S. Daniel, Tuan A. Dao, Dominic Daprano, Tiffany Davis, Neha Deshpande, Rachel S. Dey, D. Scott Diamond, Claire E. Dickerson, J. P. Dodson, James Dragan, Marc Dvorak, L. F. Edge, C. R. Elliott, K. Elliott, Kevin Eng, Jacob Fast, Colin P. Feeney, David Fialkow, Dylan H. Finestone, Micha N. Fireman, Bryan H. Fong, Trevor M. Fowler, Sean Frazier, Kiera Fuller, Christina A. C. Garcia, Kacy L. Garstka, Kara C. Garvey, Zachary Geiger, Galen R. Gledhill, Caleigh M. Goodwin-Schoen, Joseph L. Goralka, Bradley W. Greene, H. K. Gurgenian, Sieu D. Ha, Wonill Ha, Nathanial R. Hapeman, Brooke M. Hardesty, Jim Harrington, Patrick M. Harrington, Thomas R. B. Harris, B Harrison, A. T. Hatke, R.R. Hayes, Kevin He, Raúl Hernández García, Ryan Hickey, Jocelyn Hicks-Garner, Alex Hirman, Donald A. Hitko, David Ho, Holland Y. Ho, Vinh S. Ho, Nathan Holman, Adam Holmes, Nerys Huffman, Daniel R. Hulbert, Eric B. Isaacs, Clayton Jackson, Logan Jaeger, Ian Jenkins, Cameron V. Jennings, Paul C. Jerger, B. Johnson, Aaron M. Jones, Michael P. Jura, Adour Kabakian, Raj Katti, Tyler Keating, Joseph Kerckhoff, Joseph D. Kern, Isaac Khalaf, A Kher, Jake J. Kim, Erich Kinder, Andrey A. Kiselev, William F. Koehl, Patrick W. Krantz, Thaddeus D. Ladd, Pierce G. Laing, Sanaaya Lakdawala, Nathan J. Lang, Robert Lanza, Elias Lawson-Fox, Dustin Le, Kangmu Lee, Nathan Lee, Jaime Lerma, Mark Levendorf, Alwina R. Liu, Henry Lizarraga, Aurelio Lopez, Hoa C. Ly, Torrey T. Lyons, Theodore K. Macioce, Matthew M. Mackey, John K. Maeda, Ryan M. Martin, Daniel S. Matic, Justine W. Matten, Gavin C. Mazur, Max S. McCready, Olivia Means, Kevin E. Millner, I. Milosavljevic, Matthew Morris, Susan L. Morton, Samuel Mumford, Bryce D. Murley, Robert G. Nagele, Taro Naoi, Cameron R. Nelson, Georgia A. Newman, David B. Nguyen, Tina Niknejad, Rebecca N. Nishide, Liam C. O'Brien, Colin B. E. O'Keefe, Riley P. O'Neil, Andrew Oriani, Anthony F. Ortiz, John J. Ottusch, Andrew Pan, Pamela Patterson, Uttam Paudel, Julius C. Perez, Christi Peterson, Vu T. Phan, Nickolas Pilgram, Clifford E. Plesha, Winston Pouse, Eric Prophet, Daniel Queen, Nicholas Quirk, Kate Raach, Matthew T. Rakher, Matthew D. Reed, Brandon D. Reynolds, Luke D. Robertson, Zechariah Rogers, Y. Royter, Matthew J. Ruiz, Golam Sabbir, Roshan Sajjad, Christopher D. Sanborn, Rachel H. Sarmiento, Christian J. Schnaible, Cole Scott, Nicholas M. Sebastiani, Eric M. Segall, Alen Senanian, Adalberto Sicairos, Shariq Siddiqui, Kartik Singh, Aaron Smith, Daniel E. Smith, Robert Smith, Sarah F. Sontag, E.A. Sovero, Kevin C. Staley, Andrea Su, June Suh, Bo Sun, Daofa Sun, Christopher M. Swank, Noah Swimmer, Mariano J. Taboada, Bryan J. Thomas, Yessica Torres, Jeremy W. Touve, Alan Tran, Ivan Tran, Chantang Tsen, Skylar Turner, Miguel Valencia, Irma Valles, James R. van Meter, Nicholas D. VanRensselaer, Franklin Vartanian, Daniel Volya, Zachary J. Vrba, Phuong Hong Vu, Annette L. Wagner, John C. Wallner, Michael Walsh, Shuoqin Wang, Tong Wang, Daniel R. Ward, Aaron Weinstein, T. B. Welch, Thomas V. Westrick, Evan T. White, Randall M. White, Samuel J. Whiteley, Gananath Wijeratne, Parker Williams, Jack T. Wilson, Courtney Wilt, Deborah E. Winklea, Onnik Yaglioglu, Daniel Yap, Clifford S. YoungSciortino, Daniel Zehnder, Andrew Ziegler
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Le résumé fourni par la source
Commercially-relevant quantum computers will require large numbers of high-performing qubits that can be manufactured, integrated, and controlled at scale. Silicon exchange-only (EO) qubits are a strong candidate modality due to their control-signal simplicity and compatibility with advanced semiconductor manufacturing, but questions remain around the achievability of sufficiently low noise and a scalable control and wiring solution. Here we introduce a quantum processing unit composed of a custom-designed cryogenic CMOS controller, a novel high-density superconducting ribbon cable, and a low-noise EO qubit device. The quantum chip features a three-rail array of 54 exchange-coupled quantum dots, configurable to host up to 18 EO qubits. We integrate and use these components to demonstrate qubit performance for both single-qubit and entangling operations that advances the EO state of the art by an order of magnitude. We further validate this system by implementing a distance-5 repetition code and a quantum error detecting code then make detailed comparisons with simulations. Our approach facilitates a utility-scale quantum computer with manageable operational and capital requirements.
Ce résumé expose les affirmations des auteurs. BNTIC ne l’interprète pas comme une validation indépendante des résultats.
Le contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.
- Titre Crossref
- A digitally controlled silicon quantum processing unit
- Date Crossref
- 29/07/2026
- Éditeur
- Springer Science and Business Media LLC
- Type
- journal-article
Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.
Les sujets associés
Quantum and electron transport phenomenaQuantum-Dot Cellular AutomataPhysics of Superconductivity and Magnetism