Christianson A D, Fanelli V R, Lawrence J M, Goremychkin E A, Osborn R, Bauer E D, Sarrao J L, Thompson J D, Frost C D, Zarestky J L
University of California, Irvine, California 92697, USA.
Phys Rev Lett. 2006 Mar 24;96(11):117206. doi: 10.1103/PhysRevLett.96.117206. Epub 2006 Mar 22.
The intermediate valence compound YbAl3 exhibits a broad magnetic excitation in the inelastic neutron scattering spectrum with characteristic energy E1 approximately 50 meV, equal to the Kondo energy (T(K) approximately 600-700 K). In the low temperature (T < T(coh) approximately 40 K) Fermi liquid state, however, a new peak in the scattering occurs at E2 approximately 33 meV, which lies in the hybridization gap that exists in this compound. We report inelastic neutron scattering results for a single-crystal sample. The scattering at energies near E1 qualitatively has the momentum (Q) dependence expected for interband scattering across the indirect gap. The scattering near E2 has a very different Q dependence: it is a weak function of Q over a large fraction of the Brillouin zone and is smallest near (1/2,1/2, 1/2). A possibility is that the peak at E2 arises from a spatially localized excitation in the hybridization gap.
中间价化合物YbAl3在非弹性中子散射谱中表现出一个宽的磁激发,其特征能量E1约为50毫电子伏特,等于近藤能量(T(K)约为600 - 700 K)。然而,在低温(T < T(coh)约40 K)费米液体状态下,散射中出现了一个新的峰,位于E2约33毫电子伏特处,该峰处于该化合物中存在的杂化能隙内。我们报道了单晶样品的非弹性中子散射结果。在E1附近能量处的散射定性地具有跨越间接能隙的带间散射所预期的动量(Q)依赖性。在E2附近的散射具有非常不同的Q依赖性:在布里渊区的很大一部分上它是Q的弱函数,并且在(1/2,1/2, 1/2)附近最小。一种可能性是E2处的峰源于杂化能隙中的空间局域激发。