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利用几何光学的方法对固体激光器中Zig-Zag板条介质的结构设计进行了分析。具体分析了Zig-Zag板条端面切割角的选取方法。对于Nd:YAG增益介质,采用31°切割角的板条具有较高的效率,且便于加工和镀膜。以端面31°切割角的板条为例,分析了板条各几何尺寸的设计方法。Zig-Zag板条的宽度、厚度和长度等参数需充分考虑与半导体泵浦模块的匹配以得到最佳设计。 相似文献
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Using the first-principles method, the spin-dependent transport properties of a novel platform molecule containing a freestanding molecular wire is investigated by simulating the spin-polarized scanning tunneling microscope experiment with Ni tip and Au substrate electrodes. Transport calculations show that the total current increases as the tip gradually approaches to the substrate, which is consistent with the conductance obtained from previous experiment. More interestingly, the spin polarization (SP) of current modulated by compression effect has the completely opposite trend to the total current. Transmission analyses reveal that the reduction of SP of current with compression process originates from the promotion of spin-down electron channel, which is controlled by deforming the molecule wire. In addition, the density of states shows that the SP of current is directly affected by the organic-ferromagnetic spinterface. The weak orbital hybridization between the Ni tip and propynyl of molecule results in high interfacial SP, whereas the breaking of the C $\equiv$ C triple of propynyl in favor of the Ni-C-C bond induces the strong orbital hybridization and restrains the interfacial SP. This work proposes a new way to control and design the SP of current through organic-ferromagnetic spinterface using functional molecular platform. 相似文献
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