David M. Cook, "The Theory of the Electromagnetic Field", 1975, pp. 128-137. |
IBM Technical Disclosure Bulletin, vol. 23, No. 8, Jaycox et al., "Generalized Tightly Low Noise SQUID", Jan. 1981, pp. 3906-3909. |
IBM Technical Disclosure Bulletin, vol. 25, No. 1, Chaudhari et al., Jun. 1982, pp. 8-14, "Use of SQUID System to Locate Resistance Leakage in Electronic Packages". |
IBM Technical Disclosure Bulletin, vol. 27, No. 5, Ketchen, "Three Axis SQUID Magnetometer", Oct. 1984, pp. 2790-2791. |
IBM Technical Disclosure Bulletin, vol. 27, No. 5, Jaycox et al., Oct. 1984, pp. 2822-2824, "High Spatial Resolution Magnetometer Head for . . . SQUID". |
IBM Technical Disclosure Bulletin, vol. 27, No. 10A, Mar. 1985, pp. 5847-5848, "Integrated Thin-Film Miniature SQUID Magnetometer". |
IBM Technical Disclosure Bulletin, vol. 29, No. 5, Oct. 1986, pp. 2314-2316, "SQUID Gradiometer Using Planar Coupling". |
John Clarke and Roger H. Koch, Science, vol. 242, "The Impact of High Temperature Superconductivity on SQUID Magnetometers", 14 Oct. 1988, pp. 217-223. |
John Clarke, IEEE "Advances in SQUID Magnetometers", Oct. 1980, pp. 1896-1908. |
Richard F. Voss et al., J. Appl. Phys., vol. 51, No. 4, Apr. 1980, pp. 2306-2309, "All-Nb low-noise dc SQUID with 1-Mm tunnel junctions". |
William A. Geyger, Nonlinear-Magnetic Control Devices, Chapter 14, 1964, pp. 364-377 (month unknown). |