A single-layer flat-coil-oscillator (SFCO)-based super-broadband position sensor for nano-scale-resolution seismometry
Author:
Publisher
Elsevier BV
Subject
Instrumentation,Nuclear and High Energy Physics
Reference15 articles.
1. Introduction to Seismology;Bath,1973
2. Highly sensitive open-flat coil magnetometer for the λ(H,T) measurements in plate-like high-Tc cuprates
3. Calibration of the open-flat coil-based tunnel diode oscillator technique (OFC magnetometer) for quantitative extraction of physical characteristics of superconductive state
4. Flat coil-based tunnel diode oscillator enabling to detect the real shape of the superconductive transition curve and capable of imaging the properties of HTSC films with high spatial resolution
5. The possibility of detection of small absorption in HTS thin films by means of the highly sensitive OFC magnetometer
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1. On the possibility of using highly sensitive SFCO sensors for studies in the field of behavioral physiology;2024-04-15
2. A Single-Layer Flat-Coil-Oscillator-Based Technology as a Highly Sensitive Promising Detector for State-of-the-Art “Cognitive Radio Systems”;New Insights on Oscillators and Their Applications to Engineering and Science [Working Title];2023-08-10
3. Applicability of the single-layer flat-coil-oscillator technology-based vibration and vibro-acoustic sensors in medical and biological study of the cardiovascular system: Advantages and perspectives of the carotid pulse wave registration;Review of Scientific Instruments;2022-05-01
4. On the possibility of recording and studying human movement activity with seismic sensors of a new type: Advantages and prospects of the single-layer flat-coil-oscillator technology based sensors;Review of Scientific Instruments;2021-05-01
5. Non-Contact Far-Field Non-Destructive Scanning of Various Structures and Media by Radio-Frequency ‘Magnetic-Field’ SFCO-Probe — a New Type of Visualization Technology;Journal of Contemporary Physics (Armenian Academy of Sciences);2020-01
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