Quantum Magnetic Sensors and Magnetochemistry
A special issue of Applied Sciences (ISSN 2076-3417). This special issue belongs to the section "Chemical and Molecular Sciences".
Deadline for manuscript submissions: closed (20 November 2021) | Viewed by 356
Related Special Issue: https://www.mdpi.com/journal/magnetochemistry/special_issues/quantum_magnetic_sensors
Special Issue Editor
Interests: magnetic sensors; superconducting quantum interference devices; nanomagnetism; magnetic microscopy
Special Issues, Collections and Topics in MDPI journals
Special Issue Information
Dear Colleagues,
Many sophisticated research experiments and applications rely on the measurement of extremely weak magnetic fields (biomagnetism, nanomagnetism, molecular magnetism, magnetic microscopy, etc.). Hence, in recent decades, many efforts have been devoted toward the development of different ultrasensitive magnetic sensors, such as the atomic magnetometer based on the detection of the Larmor spin precession of optically pumped atoms, hybrid magnetometers based on giant magnetoresistance spin valves, diamond magnetometers based on nitrogen-vacancy centers in room-temperature diamond, and micro and nano superconducting quantum interference devices (SQUIDs). In addition, in the last years, molecular magnetism with the re-introduction of lanthanide ions as spin carriers in magnetic molecules is very promising in view of the applications to spintronic devices, qubit, and multifunctional materials.
The aim of this Special Issue is to present an overview of the development of magnetic quantum sensor and their applications. Both original research articles and reviews are encouraged.
You may choose our Joint Special Issue in Magnetochemistry.
Prof. Dr. Paolo Silvestrini
Guest Editor
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Keywords
- optically pumped magnetometers
- micro and nano SQUIDs
- magnetic sensing with a nitrogen-vacancy in diamond
- ultrahigh sensitive superconducting magnetometers
- magnetostrictive sensors
- nanomagnetism
- spintronics
- giant magnetoresistance (GMR) sensors
- high spatial resolution
- magnetic microscopy
- magnetic relaxation immunoassay
- lanthanide-based spintronics and qubits
- lanthanide-based multifunctional magnetic materials
- characterization techniques of lanthanide-based magnetic materials
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