The electronic structure of fcc Fe/Cu{111}interface has been studied by angle-resolved photoemission with synchrotron radiation.The existence of the interface state and absence of intermixture between Fe and Cu atoms ...The electronic structure of fcc Fe/Cu{111}interface has been studied by angle-resolved photoemission with synchrotron radiation.The existence of the interface state and absence of intermixture between Fe and Cu atoms in the Fe/Cu{111}interface show that the Fe/Cu{111}system has an abrupt and ordered interface.展开更多
By using UR-10 automatic double-beam infrared spectrophotometer, measurements of reflection spectra at band from 2 to 25μ were made on the polished planes of rock samples. The results prove to be very satisfactory fo...By using UR-10 automatic double-beam infrared spectrophotometer, measurements of reflection spectra at band from 2 to 25μ were made on the polished planes of rock samples. The results prove to be very satisfactory for the selection of optimal bands and lithologic interpretation of remote sensing pictures.展开更多
基金Supported by the Chinese Academy of Sciences under No.KJ951-A1-401Doctoral Program Foundation from the State Education Committee。
文摘The electronic structure of fcc Fe/Cu{111}interface has been studied by angle-resolved photoemission with synchrotron radiation.The existence of the interface state and absence of intermixture between Fe and Cu atoms in the Fe/Cu{111}interface show that the Fe/Cu{111}system has an abrupt and ordered interface.
文摘By using UR-10 automatic double-beam infrared spectrophotometer, measurements of reflection spectra at band from 2 to 25μ were made on the polished planes of rock samples. The results prove to be very satisfactory for the selection of optimal bands and lithologic interpretation of remote sensing pictures.