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首页> 外文期刊>Nanotechnology >Perceptible exciton-to-trion conversion and signature of defect mediated vibronic modes and spin relaxation in nanoscale WS2 exposed to gamma-rays
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Perceptible exciton-to-trion conversion and signature of defect mediated vibronic modes and spin relaxation in nanoscale WS2 exposed to gamma-rays

机译:染色介导的缺陷介导的衰伤的激素到Troion转化和签名,纳米级Ws2暴露于γ射线的旋转弛豫

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In this work, we report manifested optical, optoelectronic and spin-spin relaxation features of a few layered tungsten disulphide (WS2) nanosheets subjected to energetic gamma-photons (similar to 1.3 MeV) emitted from a Co-60 source. Upon intense irradiation (dose = 96 kGy), a slight departure from the pure hexagonal phase was realized with the introduction of the trigonal phase at large. Moreover, in the Raman spectra, as a consequence of the radiation-induced effect, an apparent improvement of the E-to-A mode intensity and a reduction in phonon lifetimes have been realized, with the latter being dependent on the linewidths. The emergence of the new peak (D) maxima observable at similar to 406 cm(-1) in the Raman spectra and similar to 680 nm in the photoluminescence (PL) spectra can be attributed to the introduction of defect centres owing to realization of sulphur vacancies (V-S) in the irradiated nanoscale WS2. Additionally, neutral exciton to charged exciton (trion) conversion is anticipated in the overall PL characteristics. The PL decay dynamics, while following bi-exponential trends, have revealed ample improvement in both the fast parameter (0.39 0.01 ns to 1.88 0.03 ns) and the slow parameter (2.36 0.03 ns to 12.1 0.4 ns) after gamma-impact. We attribute this to the finite band gap expansion and the incorporation of new localized states within the gap, respectively. A declining exciton annihilation rate is also witnessed. The isotropic nature of the electron paramagnetic resonance spectra as a consequence of gamma-exposure would essentially characterize a uniform distribution of the paramagnetic species in the system, while predicting a three-fold improvement of relative spin density at 96 kGy. Exploring defect dynamics and spin dynamics in 2D nanoscale systems does not only strengthen fundamental insight but can also offer ample scope for designing suitable components in the areas of miniaturized optoelectronic and spintronic devices.
机译:在这项工作中,我们报告了少数分层钨(WS2)纳米晶片的表现为光学,光电和旋转旋转弛豫特征,其经受从CO-60源发射的能量γ-光子(类似于1.3meV)。在辐射激烈(剂量= 96 kgy)后,通过引入大的三角形阶段来实现纯六边形阶段的轻微偏离。此外,在拉曼光谱中,由于辐射诱导的效果,已经实现了E-to-M模式强度的表观改善和终身时间的减少,后者依赖于线宽。在拉曼光谱中类似于406cm(-1)的新峰(d)最大可观察到的新峰值(d)可观察到的光致发光(PL)光谱中的680nm可归因于由于硫的实现引入缺陷中心辐照纳米级WS2中的空位(VS)。此外,在整个PL特性中预期了充电激子(TRION)转换的中性激子。 PL衰减动态,同时进行双指数趋势,揭示了快速参数(0.39 0.01 ns至1.88 0.03 ns)和慢性参数(2.36 0.03 ns至12.1 0.4 ns)的慢速参数。我们将这一点归因于有限频段差距扩展,并分别在间隙内纳入新的局部状态。还有一个衰退的激子湮灭率也得到了见证。由于γ-曝光后,电子顺磁共振光谱的各向同性性质基本上表征了系统中顺磁性物种的均匀分布,同时预测96 kgy的相对旋转密度的三倍提高。探索2D纳米级系统中的缺陷动态和旋转动力学不仅加强了基础知识,而且还可以提供充分的范围,以设计在小型化光电和旋转式装置的区域内设计合适的组件。

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