Patent Leaderboard
USPTO Patent Rankings Data through Sept 30, 2025
MA

Mohammad H. Amin — 72 Patents

DSD-Wave Systems: 66 patents #1 of 132Top 1%
1B1372934 B.C.: 6 patents #2 of 35Top 6%
Coquitlam, CA: #1 of 508 inventorsTop 1%
Overall (All Time): #27,368 of 4,157,543Top 1%
72 Patents All Time

Issued Patents All Time

Showing 26–50 of 72 patents

Patent #TitleCo-InventorsDate
10691633 Analog processor comprising quantum devices Alexander Maassen van den Brink, Peter Love, Geordie Rose, David Grant, Miles F. H. Steininger +2 more 2020-06-23
10671937 Systems and methods for quantum computation Sheir Yarkoni, Trevor Michael Lanting, Kelly T. R. Boothby, Andrew D. King, Evgeny A. Andriyash 2020-06-02
10657198 Re-equilibrated quantum sampling Evgeny A. Andriyash 2020-05-19
10552757 Systems and methods for operating a quantum processor to determine energy eigenvalues of a Hamiltonian Andrew J. Berkley, Richard G. Harris, Trevor Michael Lanting, Anatoly Smirnov 2020-02-04
10346349 Analog processor comprising quantum devices Alexander Maassen van den Brink, Peter Love, Geordie Rose, David Grant, Miles F. H. Steininger +2 more 2019-07-09
10346508 Re-equilibrated quantum sampling Evgeny A. Andriyash 2019-07-09
10290798 Systems, methods and apparatus for active compensation of quantum processor elements Richard G. Harris, Andrew J. Berkley, Jan Johansson, Mark W. Johnson, Paul I. Bunyk 2019-05-14
10140248 Analog processor comprising quantum devices Alexander Maassen van den Brink, Peter Love, Geordie Rose, David Grant, Miles F. H. Steininger +2 more 2018-11-27
10068180 Systems and methods for operating a quantum processor to determine energy eigenvalues of a hamiltonian Andrew J. Berkley, Richard G. Harris, Trevor Michael Lanting, Anatoly Smirnov 2018-09-04
10037493 Universal adiabatic quantum computing with superconducting qubits Richard G. Harris, Anatoly Smirnov 2018-07-31
9984333 Physical realizations of a universal adiabatic quantum computer Jacob Daniel Biamonte, Andrew J. Berkley 2018-05-29
9727527 Analog processor comprising quantum devices Alexander Maassen van den Brink, Peter Love, Geordie Rose, David Grant, Miles F. H. Steininger +2 more 2017-08-08
9727823 Systems and methods for achieving orthogonal control of non-orthogonal qubit parameters Trevor Michael Lanting, Colin C. Enderud 2017-08-08
9710758 Quantum processor with instance programmable qubit connectivity Paul I. Bunyk, Richard G. Harris, Trevor Michael Lanting, Mark W. Johnson, Jeremy P. Hilton +1 more 2017-07-18
9607270 Systems, methods and apparatus for active compensation of quantum processor elements Richard G. Harris, Andrew J. Berkley, Jan Johansson, Mark W. Johnson, Paul I. Bunyk 2017-03-28
9162881 Physical realizations of a universal adiabatic quantum computer Jacob Daniel Biamonte, Andrew J. Berkley 2015-10-20
9152923 Systems, methods and apparatus for active compensation of quantum processor elements Richard G. Harris, Andrew J. Berkley, Jan Johansson, Mark W. Johnson, Paul I. Bunyk 2015-10-06
9069928 Analog processor comprising quantum devices Alexander Maassen van den Brink, Peter Love, Geordie Rose, David Grant, Miles F. H. Steininger +2 more 2015-06-30
9015215 Systems, methods, and apparatus for calibrating, controlling, and operating a quantum processor Andrew J. Berkley, Richard G. Harris 2015-04-21
8686751 Analog processor comprising quantum devices Alexander Maassen van den Brink, Peter Love, Geordie Rose, David Grant, Miles F. H. Steininger +2 more 2014-04-01
8560470 Method and apparatus for evolving a quantum system using a mixed initial Hamiltonian comprising both diagonal and off-diagonal terms Vicky Choi, Andrew J. Berkley 2013-10-15
8536566 Systems, methods and apparatus for active compensation of quantum processor elements Jan Johansson, Andrew J. Berkley 2013-09-17
8504497 Methods of adiabatic quantum computation 2013-08-06
8283943 Analog processor comprising quantum devices Alexander Maassen van den Brink, Peter Love, Geordie Rose, David Grant, Miles F. H. Steininger +2 more 2012-10-09
8234103 Physical realizations of a universal adiabatic quantum computer Jacob Daniel Biamonte, Andrew J. Berkley 2012-07-31