Development of high-Tc SQUID magnetometers for on-scalp MEG
Doctoral thesis, 2017
nanowire junctions
on-scalp MEG
Bicrystal grain boundary
magnetoencephalography
YBCO
magnetometers
high-Tc SQUIDs
Author
Minshu Xie
Chalmers, Microtechnology and Nanoscience (MC2), Quantum Device Physics
High-Tc SQUID vs. low-Tc SQUID-based recordings on a head phantom: Benchmarking for magnetoencephalography
IEEE Transactions on Applied Superconductivity,;Vol. 25(2015)p. Article number 6940248-
Journal article
Feedback solutions for low crosstalk in dense arrays of high-T-c SQUIDs for on-scalp MEG
Superconductor Science and Technology,;Vol. 30(2017)p. art. nr 054006-
Journal article
Improvement of Ultra-Low Field Magnetic Resonance Recordings With a Multilayer Flux-Transformer-Based High-T-C SQUID Magnetometer
IEEE Transactions on Applied Superconductivity,;Vol. 23(2013)
Journal article
Benchmarking for On-Scalp MEG Sensors
IEEE Transactions on Biomedical Engineering,;Vol. 64(2017)p. 1270-1276
Journal article
Xie, M., Chukharkin, M., Rueux, S., Schneiderman, J. F., Kalabukhov, A., Arzeo, M., Bauch, T., Lombardi, F., Winkler, D. Improved coupling of nanowire-based high-Tc SQUID magnetometers - simulations and experiments
Xie, M., Chukharkin, M., Rueux, S., Schneiderman, J. F., Kalabukhov, A., Arzeo, M., Bauch, T., Lombardi, F., Winkler, D. Extraction of inductances and effective areas of single-layer and flip-chip nanowire-based high-Tc SQUID magnetometers
Areas of Advance
Nanoscience and Nanotechnology (SO 2010-2017, EI 2018-)
Subject Categories
Physical Sciences
Biomedical Laboratory Science/Technology
Nano Technology
Roots
Basic sciences
Driving Forces
Innovation and entrepreneurship
Infrastructure
Nanofabrication Laboratory
Learning and teaching
Pedagogical work
ISBN
978-91-7597-642-6
Doktorsavhandlingar vid Chalmers tekniska högskola. Ny serie: 4323
Publisher
Chalmers
Kollektorn, Kemivägen 9 at Chalmers
Opponent: Lauri Parkkonen, Department of Neuroscience and Biomedical Engineering at Aalto University, Finland