Metastable phase formation in Fe-Cu multilayers was studied. Laser irradiation of the multilayers results in a mixture of b.c.c. and f.c.c. phases with extended solid solubility. Ion-beam mixing causes the formation of an amorphous phase with composition between 60 and 70 at.% Fe. Different analysis techniques give evidence of both b.c.c. and f.c.c. types of short-range ordering in the amorphous phase.

EFFECTS OF ION-BEAM AND PULSED LASER IRRADIATION ON FE-CU MULTILAYERS / Gupta, A., Principi, G., Trotta, P., Jannitti, E., Tosello, C., Gratton, L.m., Enzo, S., Lorusso, S., Rigato, V., RI Gupta Ajay/F 1396, 2.. - In: SURFACE & COATINGS TECHNOLOGY. - ISSN 0257-8972. - 51:1-3(1992), pp. 429-434. [10.1016/0257-8972(92)90276-G]

EFFECTS OF ION-BEAM AND PULSED LASER IRRADIATION ON FE-CU MULTILAYERS

ENZO, Stefano;
1992-01-01

Abstract

Metastable phase formation in Fe-Cu multilayers was studied. Laser irradiation of the multilayers results in a mixture of b.c.c. and f.c.c. phases with extended solid solubility. Ion-beam mixing causes the formation of an amorphous phase with composition between 60 and 70 at.% Fe. Different analysis techniques give evidence of both b.c.c. and f.c.c. types of short-range ordering in the amorphous phase.
1992
EFFECTS OF ION-BEAM AND PULSED LASER IRRADIATION ON FE-CU MULTILAYERS / Gupta, A., Principi, G., Trotta, P., Jannitti, E., Tosello, C., Gratton, L.m., Enzo, S., Lorusso, S., Rigato, V., RI Gupta Ajay/F 1396, 2.. - In: SURFACE & COATINGS TECHNOLOGY. - ISSN 0257-8972. - 51:1-3(1992), pp. 429-434. [10.1016/0257-8972(92)90276-G]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11388/85298
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