- Patent Title: Mesoscale system feedback-induced dissipation and noise suppression
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Application No.: US16096893Application Date: 2017-04-27
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Publication No.: US11035810B2Publication Date: 2021-06-15
- Inventor: Chaitanya Gupta , Ross M. Walker , Boris Murmann , Roger T. Howe
- Applicant: The Board of Trustees of the Leland Stanford Junior University
- Applicant Address: US CA Palo Alto
- Assignee: The Board of Trustees of the Leland Stanford Junior University
- Current Assignee: The Board of Trustees of the Leland Stanford Junior University
- Current Assignee Address: US CA Palo Alto
- Agency: Thomas|Horstemeyer, LLP
- International Application: PCT/US2017/029854 WO 20170427
- International Announcement: WO2017/189854 WO 20170427
- Main IPC: G01N27/416
- IPC: G01N27/416 ; G01N27/327 ; G01N27/02 ; G01N27/49

Abstract:
A high-gain and low-noise negative feedback control (“feedback control”) system can detect charge transfer in quantum systems at room temperatures. The feedback control system can attenuate dissipative coupling between a quantum system and its thermodynamic environment. The feedback control system can be integrated with standard commercial voltage-impedance measurement system, for example, a potentiostat. In one aspect, the feedback control system includes a plurality of electrodes that are configured to electrically couple to a sample, and a feedback mechanism coupled to a first electrode of the plurality of electrodes. The feedback mechanism is configured to detect a potential associated with the sample via the first electrode. The feedback mechanism provides a feedback signal to the sample via a second electrode of the plurality of electrodes, the feedback signal is configured to provide excitation control of the sample at a third electrode of the plurality of electrode.
Public/Granted literature
- US20190137425A1 MESOSCALE SYSTEM FEEDBACK-INDUCED DISSIPATION AND NOISE SUPPRESSION Public/Granted day:2019-05-09
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