[[abstract]]The first coherent, single-crystal, magnetic rare-earth superlattices of Gd-Y were grown by metal molecular-beam epitaxy, X-ray structural analysis showed that the superlattices have a composition modulation of two atomic-layer sharp interfaces with the modulation amplitude approaching 100%. The magnetic properties are consistent with a model in which the central Gd layers in each array behave like ideal ferromagnetic thin films even for as few as five atomic layers. The two interfacial Gd layers at the sides appear not to order ferromagnetically and have a susceptibility, χg independent of the number of atomic layers[[fileno]]2010113010039[[department]]物理
We have studied a series of Nd/Y films and superlattices, grown by molecular beam epitaxy (MBE), usi...
We have studied a series of Nd/Y films and superlattices, grown by molecular beam epitaxy (MBE), usi...
[[abstract]]The microscopic magnetic structures of coherent, single‐crystal epitaxially grown superl...
[[abstract]]The first coherent, single-crystal, magnetic rare-earth superlattices of Gd-Y were grown...
[[abstract]]The first coherent single crystal rare earth superlattices of GdnYm were grown by metal ...
Single crystal magnetic rare earth superlattices were synthesized by molecular beam epitaxy. The stu...
[[abstract]]Summary form only given, as follows. Metal superlattices are predicted to exhibit novel ...
[[abstract]]Modulations of the magnetic properties in synthetic rare-earth Gd-Y superlattices were o...
Structural and magnetic properties of heavy rare earth films and superlattices synthesized by molecu...
Structural and magnetic properties of heavy rare earth films and superlattices synthesized by molecu...
Single crystal superlattices of heavy rare earth metals with yttrium have been synthesized by method...
Single crystal superlattices of heavy rare earth metals with yttrium have been synthesized by method...
Single-crystal Tm/Y and Tm/Lu superlattices have been grown using molecular beam epitaxy and their c...
Single-crystal Gd/La superlattices have been grown by molecular beam epitaxy. The magnetic ordering ...
Growth of epitaxial transition-metal superlattices; has proven essential in elucidating the role of ...
We have studied a series of Nd/Y films and superlattices, grown by molecular beam epitaxy (MBE), usi...
We have studied a series of Nd/Y films and superlattices, grown by molecular beam epitaxy (MBE), usi...
[[abstract]]The microscopic magnetic structures of coherent, single‐crystal epitaxially grown superl...
[[abstract]]The first coherent, single-crystal, magnetic rare-earth superlattices of Gd-Y were grown...
[[abstract]]The first coherent single crystal rare earth superlattices of GdnYm were grown by metal ...
Single crystal magnetic rare earth superlattices were synthesized by molecular beam epitaxy. The stu...
[[abstract]]Summary form only given, as follows. Metal superlattices are predicted to exhibit novel ...
[[abstract]]Modulations of the magnetic properties in synthetic rare-earth Gd-Y superlattices were o...
Structural and magnetic properties of heavy rare earth films and superlattices synthesized by molecu...
Structural and magnetic properties of heavy rare earth films and superlattices synthesized by molecu...
Single crystal superlattices of heavy rare earth metals with yttrium have been synthesized by method...
Single crystal superlattices of heavy rare earth metals with yttrium have been synthesized by method...
Single-crystal Tm/Y and Tm/Lu superlattices have been grown using molecular beam epitaxy and their c...
Single-crystal Gd/La superlattices have been grown by molecular beam epitaxy. The magnetic ordering ...
Growth of epitaxial transition-metal superlattices; has proven essential in elucidating the role of ...
We have studied a series of Nd/Y films and superlattices, grown by molecular beam epitaxy (MBE), usi...
We have studied a series of Nd/Y films and superlattices, grown by molecular beam epitaxy (MBE), usi...
[[abstract]]The microscopic magnetic structures of coherent, single‐crystal epitaxially grown superl...