Andrew J. Berkley
64Patents
27h-index
40Co-inventors
88Inventor score
Filing activity: Aug 11, 1998 → Nov 22, 2023
Most-cited inventions
| Patent | Title | Area | Cited by | Status |
|---|---|---|---|---|
| US7533068B2 | Analog processor comprising quantum devices | Performing Operations; Transporting | 265 | Active |
| US7876248B2 | Systems, methods and apparatus for local programming of quantum processor elements | Performing Operations; Transporting | 217 | Active |
| US8035540B2 | Systems, methods and apparatus for local programming of quantum processor elements | Performing Operations; Transporting | 193 | Active |
| US8008942B2 | Analog processor comprising quantum devices | Performing Operations; Transporting | 178 | Active |
| US8018244B2 | Architecture for local programming of quantum processor elements using latching qubits | Physics | 138 | Active |
| US7619437B2 | Coupling methods and architectures for information processing | Electricity | 121 | Active |
| US7898282B2 | Systems, devices, and methods for controllably coupling qubits | Performing Operations; Transporting | 108 | Active |
| US8169231B2 | Systems, methods, and apparatus for qubit state readout | Performing Operations; Transporting | 105 | Active |
| US7639035B2 | Qubit state copying | Performing Operations; Transporting | 99 | Active |
| US8283943B2 | Analog processor comprising quantum devices | Performing Operations; Transporting | 98 | Active |
| US7843209B2 | Architecture for local programming of quantum processor elements using latching qubits | Physics | 97 | Active |
| US6243445A | Method and apparatus for telephone data network access | Electricity | 92 | Expired |
| US8098179B2 | Systems, methods and apparatus for digital-to-analog conversion of superconducting magnetic flux signals | Performing Operations; Transporting | 82 | Active |
| US8604944B2 | Systems, methods and apparatus for local programming of quantum processor elements | Performing Operations; Transporting | 70 | Active |
| US8229863B2 | Method and apparatus for evolving a quantum system using a mixed initial hamiltonian comprising both diagonal and off-diagonal terms | Performing Operations; Transporting | 58 | Active |
| US8536566B2 | Systems, methods and apparatus for active compensation of quantum processor elements | Electricity | 57 | Active |
| US8854074B2 | Systems and methods for superconducting flux qubit readout | Physics | 57 | Active |
| US7969805B2 | Coupling methods and architectures for information processing | Electricity | 51 | Active |
| US8441329B2 | Input/output system and devices for use with superconducting devices | Electricity | 49 | Active |
| US8786476B2 | Systems, methods and apparatus for digital-to-analog conversion of superconducting magnetic flux signals | Performing Operations; Transporting | 33 | Active |
| US7990662B2 | Systems, methods, and apparatus for superconducting magnetic shielding | Electricity | 32 | Active |
| US9069928B2 | Analog processor comprising quantum devices | Performing Operations; Transporting | 32 | Active |
| US8234103B2 | Physical realizations of a universal adiabatic quantum computer | Emerging Cross-Sectional Technologies | 31 | Active |
| US8686751B2 | Analog processor comprising quantum devices | Performing Operations; Transporting | 28 | Active |
| US9015215B2 | Systems, methods, and apparatus for calibrating, controlling, and operating a quantum processor | Emerging Cross-Sectional Technologies | 28 | Active |
Source: USPTO / EPO open patent data. Inventor disambiguation is heuristic; counts are objective bibliographic measures.