Quantum Research Institute Seminar | Quantum sensing with superconducting qubits
Kater Murch, Charles M. Hohenberg Professor of Physics at Washington University in St. Louis
Thursday, November 21, 2024
11:00 AM-12:00 PM
Virtual
Abstract:
Josephson junction-based quantum circuits have enabled broad exploration into open quantum systems in the microwave frequency domain. The combination of coherent quantum bits, robust single qubit control, entangling gates, and quantum noise-limited parametric amplifiers has yielded an unprecedented view into the physics of quantum measurement and dissipation. I will discuss our recent experimental work that focuses on harnessing entangled states to perform measurements beyond the capabilities of unentangled sensors. Key topics will include discussion of an entanglement-enabled probe of non-Markovian dynamics and time-travel-inspired metrology protocols.
Short bio: Kater Murch is an experimental physicist and professor in the Department of Physics at Washington University in St. Louis. His research focuses on quantum measurement and quantum information science, particularly exploring the boundary between quantum and classical physics. Murch received his Ph.D. in Physics from the University of California, Berkeley in 2008. After completing postdoctoral research at UC Berkeley, he joined the faculty at Washington University in St. Louis in 2013. At WashU, Murch leads a research group that investigates quantum measurement and control of superconducting quantum circuits. Some of their notable work includes experiments on quantum trajectory theory, quantum feedback, and weak measurement. Murch is currently co-director for the Center for Quantum Sensors at WashU and a board member of the Quantum Energy Initiative.
Josephson junction-based quantum circuits have enabled broad exploration into open quantum systems in the microwave frequency domain. The combination of coherent quantum bits, robust single qubit control, entangling gates, and quantum noise-limited parametric amplifiers has yielded an unprecedented view into the physics of quantum measurement and dissipation. I will discuss our recent experimental work that focuses on harnessing entangled states to perform measurements beyond the capabilities of unentangled sensors. Key topics will include discussion of an entanglement-enabled probe of non-Markovian dynamics and time-travel-inspired metrology protocols.
Short bio: Kater Murch is an experimental physicist and professor in the Department of Physics at Washington University in St. Louis. His research focuses on quantum measurement and quantum information science, particularly exploring the boundary between quantum and classical physics. Murch received his Ph.D. in Physics from the University of California, Berkeley in 2008. After completing postdoctoral research at UC Berkeley, he joined the faculty at Washington University in St. Louis in 2013. At WashU, Murch leads a research group that investigates quantum measurement and control of superconducting quantum circuits. Some of their notable work includes experiments on quantum trajectory theory, quantum feedback, and weak measurement. Murch is currently co-director for the Center for Quantum Sensors at WashU and a board member of the Quantum Energy Initiative.
Building: | Michigan Memorial Phoenix Project |
---|---|
Event Link: | |
Event Type: | Workshop / Seminar |
Tags: | Chemistry, Electrical And Computer Engineering, Electrical Engineering And Computer Science, Physics |
Source: | Happening @ Michigan from Michigan Quantum Research Institute Seminars, Department of Physics, Electrical and Computer Engineering, Applied Physics, Department of Chemistry, Materials Science and Engineering, Electrical Engineering and Computer Science, Quantum Research Institute |
Events
Featured
Nov
23
Saturday Morning Physics | AI and the Business World
Nigel Melville, Associate Professor of Information Systems (U-M Ross Business School)
10:30 AM
170 & 182
Weiser Hall
Upcoming
Nov
21
Quantum Research Institute Seminar | Quantum sensing with superconducting qubits
Kater Murch, Charles M. Hohenberg Professor of Physics at Washington University in St. Louis
11:00 AM
2000PML
Virtual
Nov
21
The Department of Astronomy 2024-2025 Colloquium Series Presents:
Dr. Catherine C. Espaillat, Professor, Boston University
3:30 PM
411
West Hall
Nov
22
Department of Astronomy 2024-2025 DEI Series Presents:
Dr. Catherine C. Espaillat, Professor, Boston University
9:30 AM
411
West Hall