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Supplier: Accuris
Description: International comparison of measurements of the magnetic moment using vibrating sample magnetometers (VSM) and superconducting quantum interference device (SQUID) magnetometers
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Supplier: Accuris
Description: Internationaler Vergleich von Messungen des magnetischen Moments mit Schwingprobenmagnetometern (Vibrating Sample Magnetometer, VSM) und SQUID (Superconducting Quantum Interference Device) Magnetometern (IEC/TR 62797:2013)
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Supplier: CSA Group
Description: IEC/TR 62797:2013(E) provides the results of an international comparison of measurements of the magnetic moment, using vibrating sample magnetometers (VSM) and superconducting quantum interference device (SQUID) magnetometers. The basic object of this comparison is to
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Description: IEC/TR 62797:2013(E) provides the results of an international comparison of measurements of the magnetic moment, using vibrating sample magnetometers (VSM) and superconducting quantum interference device (SQUID) magnetometers. The basic object of this comparison is to
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Description: Measurements are assumed to be on round wires with temperatures at or near 4,2 K. DC or low-ramp-rate magnetometry will be performed using either a superconducting quantum interference device or a vibrating-sample magnetometer. Extension to the measurement of
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Supplier: CSA Group
Description: Measurements are assumed to be on round wires with temperatures at or near 4,2 K. DC or low-ramp-rate magnetometry will be performed using either a superconducting quantum interference device or a vibrating-sample magnetometer. Extension to the measurement of
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Description: temperatures at or near 4,2 K. DC or low-ramp-rate magnetometry will be performed using either a superconducting quantum interference device (SQUID magnetometer) or a vibrating-sample magnetometer (VSM). In case differences between the calibrated magnetometer results are
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, quantum bits or qubits can exist in superpositions, allowing them to represent both 0 and 1 simultaneously. This property, along with entanglement and quantum interference, enables quantum computers to perform complex calculations at unprecedented speeds. However, harnessing the power of (read more)
Browse RF and Microwave Connectors Datasheets for PEI-Genesis
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Nanomedicine: Design and Applications of Magnetic Nanomaterials Nanosensors and Nanosystems
In most cases, the hysteresis loop of a magnetic material should be experimentally measured using, for example, a vibrating sample magnetometer (VSM) or superconducting quantum interference device SQUID magnetometer, and it is not possible to predict a priori what the hysteresis loop …
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SQUID magnetometers for low-frequency applications
INTRODUCTION The Superconducting QUantum Interference Device (SQUID), formed by interrupting a superconducting ring by one or more Josephson junctions, has made a significantimpact on experimental physics, precision metrology, and biomagnetic measurements.1-7'* SQUIDs have been studied intensively both theoretically and experimentally …
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Magnetoencephalography
One aimed to explore quantum phenomena related to low-temperature superconductivity which led to the development of the most sensitive magnetic field sensors, Superconducting Quantum Interference Devices (SQUIDs).
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High-Tc and low-Tc dc SQUID electronics
Superconducting quantum interference devices (SQUIDs) are commonly operated in a flux-locked loop (FLL).
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Carbon nanotube superconducting quantum interference device : Article : Nature Nanotechnology
Carbon nanotube superconducting quantum interference device : Article : Nature Nanotechnology . -
https://openaccess.leidenuniv.nl/bitstream/handle/1887/21759/PhDthesis_GeertWijts_20130813.pdf?sequence=5
In order to enable MRFM measurements at these operating conditions, we have developed a novel cantilever detection scheme, based on the use of a Superconducting Quantum Interference Device (SQUID).
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2013 Subject Index IEEE Transactions on Applied Superconductivity Vol. 23
Du, H.-I., +, TASC June 2013 6602004 Fabrication of Arrays of Nano- Superconducting Quantum Interference De- vices Using a Double-Angle Processing Approach.
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Handbook of Spintronics
Spin Hall effect SQUID-VSM Superconducting quantum interference devices –vibrating sample magnetometer STM .
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Biomagnetics
The measure- ment technique for MEG is described, introducing a superconduct- ing quantum interference device (SQUID) system.
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Sensors and Microsystems
Noise and Performance of Magnetic Nanosensor Based on Superconducting Quantum Interference Device .........................
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