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Natural fluctuations in a spin oscillator. IKORNIENKO, L. S; PETROVA, S. D; UMARKHODZHAEV, R. M et al.Soviet physics. Technical physics. 1991, Vol 36, Num 12, pp 1413-1414, issn 0038-5662Article

Electronic balancing of multichannel SQUID magnetometersTER BRAKE, H. J. M; DUNAJSKI, Z; VAN DER MHEEN, W. A. G et al.Journal of physics. E. Scientific instruments. 1989, Vol 22, Num 8, pp 560-564, issn 0022-3735, 5 p.Article

Feasibility of testing the state of paramagnetic materials and products using magnetic resonance methods: II. Low-frequency electron spin resonance methodSOBOLEV, A. S; PUDOV, V. I.Russian journal of nondestructive testing. 2002, Vol 38, Num 4, pp 244-253, issn 1061-8309, 10 p.Article

SQUIDs for nondestructive evaluationJENKS, W. G; SADEGHI, S. S. H; WIKSWO, J. P et al.Journal of physics. D, Applied physics (Print). 1997, Vol 30, Num 3, pp 293-323, issn 0022-3727Article

Low-pass filter in flux transformer circuits for SQUID magnetometersWEYAND, K.Review of scientific instruments. 1988, Vol 59, Num 6, pp 971-972, issn 0034-6748Article

Feasibility of testing the state of paramagnetic materials and products using magnetic resonance methods: III. Determination of characteristics of working matters of transducers of quantum magnetometersSOBOLEV, A. S; PUDOV, V. I.Russian journal of nondestructive testing. 2002, Vol 38, Num 4, pp 254-260, issn 1061-8309, 7 p.Article

Optimization of noise parameters of SQUID magnetometers with external negative feedbackZRUBEC, V; MANKA, J.Cryogenics (Guildford). 1995, Vol 35, Num 7, pp 451-454, issn 0011-2275Article

A wide dynamic range single-chip SQUID magnetometerRADPARVAR, M.IEEE transactions on applied superconductivity. 1994, Vol 4, Num 2, pp 87-91, issn 1051-8223Article

Theoretical sensitivity limits of the SQUID system for measuring beam intensities of electrically charged particles in superconductive acceleratorsZRUBEC, V.Cryogenics (Guildford). 1996, Vol 36, Num 6, pp 427-434, issn 0011-2275Article

Superconducting pick-up antenna with limited frequency bandwidthZRUBEC, V; MANKA, J; SKAKALA, M et al.Cryogenics (Guildford). 1993, Vol 33, Num 10, pp 999-1004, issn 0011-2275Article

Noise characteristics of dc superconducting quantum interference device with additional positive feedbackTAKADA, Y; UEHARA, G; KADO, H et al.Japanese journal of applied physics. 1994, Vol 33, Num 12A, pp L1665-L1667, issn 0021-4922, 2Article

Key components for the fabrication of YBa2Cu3O7-δ flip-chip SQUID magnetometers and current sensorsRAMOS, J; IJSSELSTEIJN, R; STOLZ, R et al.Superconductor science & technology (Print). 1998, Vol 11, Num 9, pp 887-890, issn 0953-2048Article

Deep nondestructive testing using a bulk high Tc rf-SQUIDALZAYED, N. S; FAN, C; LU, D. F et al.IEEE transactions on applied superconductivity. 1994, Vol 4, Num 2, pp 81-86, issn 1051-8223Article

Theoretical sensitivity limits of the SQUID system for measuring the radial position of a beam of electrically charged particles in superconductive acceleratorsZRUBEC, V.Cryogenics (Guildford). 1997, Vol 37, Num 2, pp 97-104, issn 0011-2275Article

Electric current injection NDE using a SQUID magnetometerBRUNO, A. C; BARBOSA, C. H; SCAVARDA, L. F et al.Research in nondestructive evaluation (Print). 1996, Vol 8, Num 3, pp 165-175, issn 0934-9847Article

Measurement of thermal noise by d.c. SQUIDNAWROCKI, W; BERTHEL, K.-H; DOEHLER, T et al.Cryogenics (Guildford). 1989, Vol 29, Num 12, pp 1160-1162, issn 0011-2275Article

Null input current SQUID magnetometer for the measurement of the transition temperature of high-Tc superconducting samplesBARBANERA, S; CASTELLANO, M. G; FOGLIETTI, V et al.Review of scientific instruments. 1988, Vol 59, Num 7, pp 1031-1034, issn 0034-6748Article

High temperature RF SQUID gradiometer applied to non-destructive testingFAN, C.-X; LU, D. F; WONG, K. W et al.Cryogenics (Guildford). 1994, Vol 34, Num 8, pp 667-670, issn 0011-2275Article

Noise in a constant-current SQUID with a floating operating pointGUSEV, A. V; MELEZHNIKOV, I. V.Telecommunications & radio engineering. 1991, Vol 46, Num 8, pp 125-127, issn 0040-2508Article

Detection of plastic deformation in low carbon steel by SQUID magnetometer using statistical techniquesKURODA, Masatoshi; YAMANAKA, Shinsuke; ISOBE, Yoshihiro et al.NDT & E international. 2005, Vol 38, Num 1, pp 53-57, issn 0963-8695, 5 p.Article

Fabrication, characterization and testing of (111) FePt L10for heat assisted magnetic recordingKAMS, D; KIM, J. Y; LU, B et al.Proceedings of SPIE, the International Society for Optical Engineering. 2005, issn 0277-786X, isbn 0-8194-6058-3, 2Vol, Part 1, 60270X.1-60270X.6Conference Paper

Automatic adjustement of bias current for direct current superconducting quantum interference deviceMAKIE-FUKUDA, K; HOTTA, M; OKAJIMA, K et al.Review of scientific instruments. 1993, Vol 64, Num 2, pp 583-584, issn 0034-6748Article

Etude du comportement électrique de constrictions réalisées dans des céramiques supraconductrices à haute température critique application à la magnétométrie par squid continu = Electrical properties of constrictions made of high temperature superconducting ceramics. Application to dc squid magnetometryGunther, Chantal; Bloyet, Daniel.1993, 177 p.Thesis

dc SQUID magnetometers from single layers of YBa2Cu3O7-xKOELLE, D; MIKLICH, A. H; LUDWIG, F et al.Applied physics letters. 1993, Vol 63, Num 16, pp 2271-2273, issn 0003-6951Article

Characteristics of the superconducting-quantum-interference-grating magnetometer consisting of grain-boundary josephson junctionsJENG, J. T; HUANG, K. H; WU, C. H et al.IEEE transactions on applied superconductivity. 2007, Vol 17, Num 2, pp 691-694, issn 1051-8223, 4 p., 1Conference Paper

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