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Localized photonic nanojets formed by core-shell diffraction gratings

机译:由核-壳衍射光栅形成的局部光子纳米射流

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The generations of localized photonic nanojets using core-shell diffraction gratings working in the visible light region are demonstrated numerically. The power flow patterns for the core-shell diffraction gratings are simulated by using the finite-difference time-domain method. The focusing qualities of localized photonic nanojets are evaluated in terms of focal length and transversal width along propagation and transversal directions. Due to surface plasmon polaritons, it has been demonstrated that the metallic shell is critical for power enhancement of photonic nanojet. The high-resolution imaging of the core-shell diffraction grating can be expected from the high-intensity photonic nanojet. The photonic nanojet could be operated in a wide range imaging for nano-scale targets through the core-shell diffraction grating.
机译:数值显示了使用在可见光区域工作的核壳衍射光栅的局部光子纳米射流的产生。使用有限差分时域方法模拟了核-壳衍射光栅的功率流型。根据沿着传播和横向方向的焦距和横向宽度评估局部光子纳米射流的聚焦质量。由于表面等离激元极化子,已证明金属壳对于提高光子纳米射流的功率至关重要。可以从高强度光子纳米射流获得核壳衍射光栅的高分辨率成像。光子纳米射流可以通过核-壳衍射光栅在宽范围成像中用于纳米级目标。

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