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Absorption spectrum of the PbS-doped silica fibers fabricated by ALD and MCVD

机译:ALD和MCVD制备的PbS掺杂石英纤维的吸收光谱

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The technique of atomic layer deposition (ALD) has been introduced to fabricate PbS-doped silica fibers, whose absorption peaks are discovered to be shifted from 1230 nm to 920 nm when the number of ALD deposition cycles varies from 80 to 30 during optical fiber preform fabrication. This is explained by suggesting that the PbS doped in fiber are under the 3D quantum confinement, i.e., quantum dots (QDs). An effective-mass approximation of the PbS QDs' sizes is then made to showthe shift of absorption peaks can be attributed to the change of size distribution of these dots.
机译:已引入原子层沉积(ALD)技术来制造掺杂PbS的石英纤维,当光纤预制棒中ALD沉积次数从80变为30时,其吸收峰从1230 nm移至920 nm。制造。这可以通过暗示光纤中掺杂的PbS处于3D量子限制(即量子点(QD))中来解释。然后对PbS QD的尺寸进行有效质量近似,以显示吸收峰的移动可归因于这些点的尺寸分布的变化。

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