Steven GellerQuantum Computing, End to End

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Quantum computing bibliography

The 79 primary papers, standards, textbooks, technical reports, and authoritative sources used across Quantum Computing, End to End.

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The same 79 source records are available in machine-readable JSON and common citation-manager formats. Export files preserve the publication's source metadata; they do not add a DOI where none is recorded.

Global bibliography

Chapter pages show the subset assigned in the chapter manifest. This page is the global publication library.

  1. primary preprint
  2. Fault-tolerant quantum computation by anyons

    A. Yu. Kitaev. Annals of Physics, 2003.

    primary peer-reviewed theory paper
  3. A variational eigenvalue solver on a photonic quantum processor

    Alberto Peruzzo et al.. Nature Communications, 2014.

    primary paper
  4. Error correcting quantum code

    Andrew M. Steane. Physical Review Letters, 1996.

    primary paper
  5. primary peer-reviewed experiment
  6. Many-body physics with individually controlled Rydberg atoms

    Antoine Browaeys and Thierry Lahaye. Nature Physics, 2020.

    peer-reviewed review
  7. Artifact Review and Badging

    Association for Computing Machinery. ACM Publications, 2026.

    official reproducibility policy
  8. Surface codes: Towards practical large-scale quantum computation

    Austin G. Fowler et al.. Physical Review A, 2012.

    peer-reviewed review
  9. Quantum sensing

    C. L. Degen, F. Reinhard, and P. Cappellaro. Reviews of Modern Physics, 2017.

    peer-reviewed review
  10. Logical reversibility of computation

    Charles H. Bennett. IBM Journal of Research and Development, 1973.

    primary paper
  11. Quantum cryptography: Public key distribution and coin tossing

    Charles H. Bennett and Gilles Brassard. Proceedings of the IEEE International Conference on Computers, Systems and Signal Processing / IBM Research, 1984.

    primary conference paper
  12. Communication via one- and two-particle operators on Einstein-Podolsky-Rosen states

    Charles H. Bennett and Stephen J. Wiesner. Physical Review Letters, 1992.

    primary paper
  13. primary paper
  14. primary peer-reviewed resource estimate
  15. Solid-state qubits integrated with superconducting through-silicon vias

    D. R. W. Yost et al.. npj Quantum Information, 2020.

    primary peer-reviewed engineering experiment
  16. Stabilizer codes and quantum error correction

    Daniel Gottesman. California Institute of Technology / arXiv, 1997.

    doctoral thesis
  17. Encoding a qubit in an oscillator

    Daniel Gottesman, Alexei Kitaev, and John Preskill. Physical Review A, 2001.

    primary paper
  18. On the power of quantum computation

    Daniel R. Simon. SIAM Journal on Computing, 1997.

    primary paper
  19. Milestones toward Majorana-based quantum computing

    David Aasen et al.. Physical Review X, 2016.

    peer-reviewed evidence roadmap
  20. Quantum theory, the Church-Turing principle and the universal quantum computer

    David Deutsch. Proceedings of the Royal Society A, 1985.

    primary paper
  21. The physical implementation of quantum computation

    David P. DiVincenzo. Fortschritte der Physik, 2000.

    primary peer-reviewed perspective
  22. primary peer-reviewed experiment
  23. An approximate Fourier transform useful in quantum factoring

    Don Coppersmith. IBM Research report / arXiv, 2002.

    primary paper
  24. Transition to Post-Quantum Cryptography Standards

    Dustin Moody et al.. National Institute of Standards and Technology, 2024.

    official transition guidance (initial public draft)
  25. Roads towards fault-tolerant universal quantum computation

    Earl T. Campbell, Barbara M. Terhal, and Christophe Vuillot. Nature, 2017.

    peer-reviewed review
  26. Scalable and robust randomized benchmarking of quantum processes

    Easwar Magesan, J. M. Gambetta, and Joseph Emerson. Physical Review Letters, 2011.

    primary paper
  27. A Quantum Approximate Optimization Algorithm

    Edward Farhi, Jeffrey Goldstone, and Sam Gutmann. arXiv, 2014.

    primary preprint
  28. Quantum complexity theory

    Ethan Bernstein and Umesh Vazirani. SIAM Journal on Computing, 1997.

    primary paper
  29. Cirq documentation

    Google Quantum AI. Google, 2026.

    official documentation
  30. Quantum error correction below the surface code threshold

    Google Quantum AI and Collaborators. Nature, 2025.

    primary peer-reviewed experiment
  31. Semiconductor spin qubits

    Guido Burkard et al.. Reviews of Modern Physics, 2023.

    peer-reviewed review
  32. On the generators of quantum dynamical semigroups

    Göran Lindblad. Communications in Mathematical Physics, 1976.

    primary peer-reviewed theory paper
  33. Quantum computing with trapped ions

    H. Häffner, C. F. Roos, and R. Blatt. Physics Reports, 2008.

    peer-reviewed review
  34. Qiskit documentation

    IBM Quantum. IBM, 2026.

    official documentation
  35. primary peer-reviewed experiment
  36. primary peer-reviewed experiment
  37. Quantum machine learning

    Jacob Biamonte et al.. Nature, 2017.

    peer-reviewed review
  38. primary peer-reviewed theory and design paper
  39. Photonic quantum technologies

    Jeremy L. O'Brien, Akira Furusawa, and Jelena Vučković. Nature Photonics, 2009.

    peer-reviewed review
  40. Low-loss interconnects for modular superconducting quantum processors

    Jingjing Niu et al.. Nature Electronics, 2023.

    primary peer-reviewed experiment
  41. peer-reviewed perspective
  42. Lecture Notes for Physics 219: Quantum Computation

    John Preskill. California Institute of Technology, 2018.

    graduate lecture notes
  43. On the Einstein Podolsky Rosen paradox

    John S. Bell. Physics Physique Fizika, 1964.

    primary paper
  44. The Theory of Quantum Information

    John Watrous. Cambridge University Press / University of Waterloo, 2018.

    textbook
  45. Quantum error correction with silicon spin qubits

    Kenta Takeda et al.. Nature, 2022.

    primary peer-reviewed experiment
  46. Noisy intermediate-scale quantum algorithms

    Kishor Bharti et al.. Reviews of Modern Physics, 2022.

    peer-reviewed review
  47. primary peer-reviewed experiment
  48. primary peer-reviewed experiment
  49. primary peer-reviewed experiment
  50. primary peer-reviewed theory paper
  51. A look at the full stack

    Lieven M. K. Vandersypen et al.. Nature Reviews Physics, 2021.

    peer-reviewed perspective
  52. A fast quantum mechanical algorithm for database search

    Lov K. Grover. Proceedings of STOC, 1996.

    primary paper
  53. Challenges and opportunities in quantum machine learning

    Marco Cerezo et al.. Nature Computational Science, 2022.

    peer-reviewed perspective
  54. Quantum Computation and Quantum Information

    Michael A. Nielsen and Isaac L. Chuang. Cambridge University Press, 2010.

    textbook
  55. A digitally controlled silicon quantum processing unit

    Michael Abraham et al.. Nature, 2026.

    primary peer-reviewed experiment
  56. Superconducting qubits: Current state of play

    Morten Kjaergaard et al.. Annual Review of Condensed Matter Physics, 2020.

    peer-reviewed review
  57. Quantum Computing: Progress and Prospects

    National Academies of Sciences, Engineering, and Medicine. National Academies Press, 2019.

    consensus study report
  58. Post-Quantum Cryptography Standards

    National Institute of Standards and Technology. NIST, 2024.

    official standardization project
  59. OpenQASM 3 specification

    OpenQASM Technical Steering Committee. Linux Foundation Joint Development Foundation, 2026.

    official technical specification
  60. Scheme for reducing decoherence in quantum computer memory

    Peter W. Shor. Physical Review A, 1995.

    primary paper
  61. primary paper
  62. primary peer-reviewed engineering paper
  63. Quantum Intermediate Representation specification and projects

    QIR Alliance. Linux Foundation Joint Development Foundation, 2026.

    official technical specification
  64. Simulating physics with computers

    Richard P. Feynman. International Journal of Theoretical Physics, 1982.

    primary paper
  65. Quantum lower bounds by polynomials

    Robert Beals, Harry Buhrman, Richard Cleve, Michele Mosca, and Ronald de Wolf. Journal of the ACM, 2001.

    primary paper
  66. Universal quantum simulators

    Seth Lloyd. Science, 1996.

    primary paper
  67. primary peer-reviewed experiment
  68. Universal control of a six-qubit quantum processor in silicon

    Stephan G. J. Philips et al.. Nature, 2022.

    primary peer-reviewed experiment
  69. Quantum computers

    T. D. Ladd et al.. Nature, 2010.

    peer-reviewed review
  70. Benchmarking quantum computers

    Timothy Proctor et al.. Nature Reviews Physics, 2025.

    peer-reviewed perspective
  71. Quantum Computing and Communications: Status and Prospects

    U.S. Government Accountability Office. GAO, 2021.

    government technology assessment
  72. primary peer-reviewed experiment
  73. Completely positive dynamical semigroups of N-level systems

    Vittorio Gorini, Andrzej Kossakowski, and E. C. G. Sudarshan. Journal of Mathematical Physics, 1976.

    primary peer-reviewed theory paper
  74. A single quantum cannot be cloned

    William K. Wootters and Wojciech H. Zurek. Nature, 1982.

    primary paper
  75. primary peer-reviewed engineering experiment
  76. Quantum Chemistry in the Age of Quantum Computing

    Yudong Cao et al.. Chemical Reviews, 2019.

    peer-reviewed review
  77. peer-reviewed review
  78. Quantum error mitigation

    Zhenyu Cai et al.. Reviews of Modern Physics, 2023.

    peer-reviewed review
  79. primary peer-reviewed experiment