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7篇 您的检索式:作者名="Valusis"
    题名 作者 年代 出处 被引量
1Terahertz time domain spectroscopy of epoxy resin composite with various carbon inclusions 显示文摘Macutkevic J Seliuta D Valusis G 2012Chemical Physics2012,404,:1
2Detection of colon cancer by terahertz techniques显示文摘Faustino Wahaia Gintaras Valusis Luis M. Bernardo Abílio Almeida Joaquim A. Moreira Patricia C. Lopes Jan Macutkevic Irmantas Kasalynas Dalius Seliuta Ramunas Adomavicius Rui Henrique Machado Lopes 2011Journal of Molecular Structure2011,,1:1
3Dielectric proper- ties of onion-like carbon based polymer films:Experiment and modeling 显示文摘Macutkevic J Seliuta D Valusis G 2009Solid State Sci2009,11,:1
4Direct measurement of the spatial amplitude of Bloch oscillations in semiconductor superlattices显示文摘Lyssenko V G Valusis G Loser F 1997Phys Rev Lett1997,79,2:1
5Detection of Colon Cancer by Terahertz Techniques显示文摘Wahaia F Valusis G Bernardo L M 2011Journal of Molecular Structure2011,1006,1:1
6Continuous wave spectroscopic terahertz imaging with InGaAs bow-tie diodes at room temperature 显示文摘Kasalynas I Venckevicius R Valusis G 2013Sensors Journal IEEE2013,13,1:1
7Terahertz structured light:nonparaxial Airy imaging using silicon diffractive optics显示文摘Structured light–electromagnetic waves with a strong spatial inhomogeneity of amplitude,phase,and polarization–has occupied far-reaching positions in both optical research and applications.Terahertz(THz)waves,due to recent innovations in photonics and nanotechnology,became so robust that it was not only implemented in a wide variety of applications such as communications,spectroscopic analysis,and non-destructive imaging,but also served as a low-cost and easily implementable experimental platform for novel concept illustration.In this work,we show that structured nonparaxial THz light in the form of Airy,Bessel,and Gaussian beams can be generated in a compact way using exclusively silicon diffractive optics prepared by femtosecond laser ablation technology.The accelerating nature of the generated structured light is demonstrated via THz imaging of objects partially obscured by an opaque beam block.Unlike conventional paraxial approaches,when a combination of a lens and a cubic phase(or amplitude)mask creates a nondiffracting Airy beam,we demonstrate simultaneous lensless nonparaxial THz Airy beam generation and its application in imaging system.Images of single objects,imaging with a controllable placed obstacle,and imaging of stacked graphene layers are presented,revealing hence potential of the approach to inspect quality of 2D materials.Structured nonparaxial THz illumination is investigated both theoretically and experimentally with appropriate extensive benchmarks.The structured THz illumination consistently outperforms the conventional one in resolution and contrast,thus opening new frontiers of structured light applications in imaging and inverse scattering problems,as it enables sophisticated estimates of optical properties of the investigated structures.Rusne Ivaskeviciute-Povilauskiene Paulius Kizevicius Ernestas Nacius Domas Jokubauskis Kestutis Ikamas Alvydas Lisauskas Natalia Alexeeva Ieva Matulaitiene Vytautas Jukna Sergej Orlov Linas Minkevicius Gintaras Valusis 2022Light(Science & Applications)2022,11,12:0
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