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4篇 您的检索式:作者名="ANUPAMA YADAV"
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1Nonlinear optical properties of integrated GeSbS chalcogenide waveguides显示文摘In this paper, we report the experimental characterization of highly nonlinear Ge Sb S chalcogenide glass waveguides.We used a single-beam characterization protocol that accounts for the magnitude and sign of the real and imaginary parts of the third-order nonlinear susceptibility of integrated Ge23 Sb7 S70(GeSbS) chalcogenide glass waveguides in the near-infrared wavelength range at λ =1580 nm. We measured a waveguide nonlinear parameter of 7.0±0.7 W^(-1)· m(-1), which corresponds to a nonlinear refractive index of n_2=0.93±0.08 × 10^(-18) m^2∕W,comparable to that of silicon, but with an 80 times lower two-photon absorption coefficient βTPA=0.010± 0.003 cm∕GW, accompanied with linear propagation losses as low as 0.5 dB/cm. The outstanding linear and nonlinear properties of Ge Sb S, with a measured nonlinear figure of merit FOMTPA=6.0 ±1.4 at λ =1580 nm, ultimately make it one of the most promising integrated platforms for the realization of nonlinear functionalities.SAMUEL SERNA HONGTAO LIN CARLOS ALONSO-RAMOS ANUPAMA YADAV XAVIER LE ROUX KATHLEEN RICHARDSON ERIC CASSAN NICOLAS DUBREUIL JUEJUN HU LAURENT VIVIEN 2018Photonics Research2018,6,5:3
2尿足细胞相关蛋白检测研究进展显示文摘肾小球是肾脏最重要的功能单位部分,它是由毛细血管内皮细胞、基底膜、脏层上皮细胞(足细胞)、系膜细胞及基质组成。其中前三者构成肾小球滤过膜,肾小球过滤的物质必须通过这3个结构才能从毛细血管腔进入Bowman’s囊。足细胞本身由胞体和足突组成,足突是胞体上大的突出部分,长长的足突黏附在肾小球基底膜上。赵亮 Anupama Kumari Yadav 卢宏柱 2015中国实用儿科杂志2015,30,9:2
3Is basiliximab induction, a novel risk factor for new onset diabetes after transplantation for living donor renal allograft recipients?显示文摘Narayan Prasad Desraj Gurjer Dharmender Bhadauria Amit Gupta Aneesh Srivastava Anupama Kaul Akhilesh Jaiswal Brijesh Yadav Subhash Yadav Raj K Sharma 2014Nephrology2014,,4:1
4Monolithically integrated stretchable photonics显示文摘Mechanically stretchable photonics provides a new geometric degree of freedom for photonic system design and foresees applications ranging from artificial skins to soft wearable electronics.Here we describe the design and experimental realization of the first single-mode stretchable photonic devices.These devices,made of chalcogenide glass and epoxy polymer materials,are monolithically integrated on elastomer substrates.To impart mechanical stretching capability to devices built using these intrinsically brittle materials,our design strategy involves local substrate stiffening to minimize shape deformation of critical photonic components,and interconnecting optical waveguides assuming a meandering Euler spiral geometry to mitigate radiative optical loss.Devices fabricated following such design can sustain 41%nominal tensile strain and 3000 stretching cycles without measurable degradation in optical performance.In addition,we present a rigorous analytical model to quantitatively predict stressoptical coupling behavior in waveguide devices of arbitrary geometry without using a single fitting parameter.Lan Li Hongtao Lin Shutao Qiao Yi-Zhong Huang Jun-Ying Li Jérôme Michon Tian Gu Carlos Alosno-Ramos Laurent Vivien Anupama Yadav Kathleen Richardson Nanshu Lu Juejun Hu 2017Light(Science & Applications)2017,6,1:0
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