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US Patent 9927501 Atomic magnetometer and operating method of the same

Patent 9927501 was granted and assigned to Korea Research Institute of Standards and Science on March, 2018 by the United States Patent and Trademark Office.

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Is a
Patent
Patent

Patent attributes

Patent Applicant
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Korea Research Institute of Standards and Science
Current Assignee
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Korea Research Institute of Standards and Science
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
9927501
Date of Patent
March 27, 2018
Patent Application Number
14573718
Date Filed
December 17, 2014
Patent Citations Received
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US Patent 12007454 Devices, systems, and methods for suppressing optical noise in optically pumped magnetometers
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US Patent 11977134 Mitigation of an effect of capacitively coupled current while driving a sensor component over an unshielded twisted pair wire configuration
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US Patent 11980466 Nested and parallel feedback control loops for ultra-fine measurements of magnetic fields from the brain using a neural detection system
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US Patent 12007453 Magnetic field generator for a magnetic field measurement system
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US Patent 11698419 Systems and methods for concentrating alkali metal within a vapor cell of a magnetometer away from a transit path of light
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US Patent 11747413 Methods and systems for fast field zeroing for magnetoencephalography (MEG)
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US Patent 11766217 Systems and methods for multimodal pose and motion tracking for magnetic field measurement or recording systems
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US Patent 11779250 Systems and methods for recording biomagnetic fields of the human heart
...
Patent Primary Examiner
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Melissa Koval
Patent abstract

Provided are an atomic magnetometer and an operating method of the same. The atomic magnetometer includes a vapor cell receiving a circularly polarized pump beam and a linearly polarized probe beam and containing an alkali metal vapor, a detector adapted to receive the probe beam passing through the vapor cell to measure magneto-optical rotation of the probe beam, a feedback coil to establish a negative feedback magnetic field signal orthogonal to a first plane defined by traveling directions of the probe beam and the pump beam and provide the negative feedback magnetic field signal to the vapor cell, and a feedback amplifier adapted to provide feedback current to the feedback coil such that the negative feedback magnetic field proportional to a measurement magnetic field is established. The measurement magnetic field of a measurement target provides magneto-optical rotation of the probe beam in the vapor cell.

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