Amorphous Magnetism II by P. W. Anderson (auth.), R. A. Levy, R. Hasegawa (eds.)

By P. W. Anderson (auth.), R. A. Levy, R. Hasegawa (eds.)

The papers making up this quantity characterize a precis of the complaints of the second one overseas Symposium on Amorphous Magnetism held at Rensselaer Polytechnic Institute on August 25- 27, 1976. end result of the resounding good fortune of the Inter­ nationwide Symposium on Amorphous Magnetism held at Wayne nation college on August 17 and 18, 1972 this symposium was once back equipped with the aim in brain of offering a discussion board for dis­ cussion of the latest theoretical and experimental advances made within the fields of spin glass platforms, amorphous magnetic alloys and magnetic oxide glasses. The symposium was once backed by way of the yank actual Society and supported through a provide from GTE Laboratories. extra help money have been supplied by way of common electrical, Allied Chemical and Ford Motor corporation. this system committee consisted of J. J. Becker (General Electric), P. A. Casabella (RPI), P. J. Cote (Watervliet Arsenal), A. M. de Graaf (Wayne nation University), R. Hasegawa, Co-Chairman (Allied Chemical), H. O. Hooper (University of Maine), H. B. Huntington (RPI), R. A. Levy, Chairman (RPI), R. okay. MacCrone (RPI), L. N. Mulay (Penn kingdom University), G. L. Salinger (RPI) and J. Wong (General Electric). this system of the symposium integrated 7 invited assessment papers, fifty three contributed papers, and 10 extra papers learn by way of identify due to time boundaries. The editors desire to expand their deep appreciation to J. J. Becker, A. M. de Graaf, P. Duwez, J. Gustafson, D. L. Huber, U.

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An evaluation of the spin wave velocity for a classical spin glass with short range interactions is carried out using equationof-motion methods and compared with the estimate obtained from the second moment of the 1ineshape function. A general expression for the frequency is derived and is analyzed for the RKKY interaction. S. Energy Research and Development Administration. t Supported in part by the National Science Foundation. *Summer visitor. Permanent address: Dept. of Physics, Univ. L. Y. CHING I.

The Ni results appear consistent with neutron data. 10 These facts indicate that the ~+ field is mainly determined by the spin-dependent screening mechanism of polarized conduction electrons, which is quite different for Pd and Ni. 3. EXPERIMENTAL RESULTS ON PdFe ALLOYS8 The polarized positive muon beam at the Lawrence Berkeley Laboratory 184-inch cyclotron was used for these experiments. 1 kG appl ied along the longest axis, which is perpendicular to the ~+ beam direction. 015 at. 28 at. % Fe impurity (65 mm x 35 mm x 8 mm approximately ell ipsoidal shape).

4. D. Sherrington and S. Kirkpatrick, Phys. Rev. Lett. 32, 1792 (1975). D. L. Huber and W. Y. Ching, AlP Conf. Proc. (to be published) . 5. K. Binder and K. Schroder, Solid State Comm. 18, 1361 (1976). K. Binder and D. Stauffer, Phys. Lett A 21, 177 (1976). 6. P. W. Anderson, Amor8hous Magnetism, ed. by H. O. Hooper and A. M. deraa£ (New York, Plenum, 1973), p. 1. 7. N. Rivier, Wiss. Z. Techn, Universe Dresden 1000 (1974). 8. P. M. Richards, Phys. Rev. Lett. £I, 1800 (1971). Strictly speaking Eq.

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