关键词不能为空

当前您在: 主页 > 英语 >

References(原始)

作者:高考题库网
来源:https://www.bjmy2z.cn/gaokao
2021-02-01 18:52
tags:

-

2021年2月1日发(作者:控制元件)


References


1.



L.


D.


Barron,


Molecular


Light


Scattering


and


Optical


Activity


(Cambridge


University, 2004).


2.



V


. K. Valev, J. J. Baumberg, C. Sibilia, and T. Verbiest, “Chirality and chiroptical


effects in plasmonic nanostructures: Fundamentals, recent progress,


and outlook,”


Adv. Mater. 25, 2517



2534 (2013).


3.



Lei


Kang,


Shoufeng


Lan,


Yonghao


Cui,


Sean


P.


Rodrigues


,


Yongmin


Liu,


Douglas


H.


Werner,


and


Wenshan


Cai,


“An


Active


Metamaterial


Platform


for


Chiral Responsive Optoelectronics,” Adv. Mater. 27(29), 4377–


4383, (2015).


4.



W. M. Zhu , Q. H. Song , L. B. Yan , W. Zhang , P. C. Wu , L. K. Chin , H. Cai ,


D. P. Tsai , Z. X. Shen , T. W. Deng , S. K. Ting , Y


. D. Gu , G


. Q. Lo , D. L.


Kwong , Z. C. Yang ,R. Huang , A. Q. Liu


, and N. I. Zheludev, “A Flat Lens with


Tunab


le Phase Gradient by Using Random Access Reconfigurable Metamaterial,”


Adv. Mater. 27(32), 4739



4743, (2015).


5.



J.


Zhou,


J.


Dong,


B.


Wang,


T.


Koschny,


M.


Kafesaki,


and


C.


M.


Soukoulis,


“Negative refractive index due to chirality,” Phys. Rev. B 79(12), 121104


(2009).


6.



E. Plum, J. Zhou, J. Dong, V


. A. Fedotov, T. Koschny, C. M. Soukoulis, and N. I.


Zheludev,


“Metamaterial


with


negative


index


due


to


chirality,”


Phys.


Rev.


B


79(3), 035407 (2009).


7.



Z. Li, R. Zhao, T. Koschny, M. Kafesaki, K. B. Alici, E. Colak, H. Caglayan, E.


Ozbay, and C. M. Soukoulis, “Chiral metamaterials with negative refractive index


based on four ?U? split ring resonators,” Appl. Phys. Lett. 97(8), 081901 (2010).



8.



R.


Zhao,


L.


Zhang,


J.


Zhou,


T.


Koschny,


and


C.


M.


Soukoulis,


“Conjugated


gammadion


chiral


metamaterial


with


uniaxial


optical


activity


and


negative


refractive index,” Phys. Rev. B 83(3), 035105 (2011).



9.



Z.


Li,


K.


B.


Alici,


H.


Caglayan,


M.


Kafesaki,


C.


M.


Soukoulis,


and


E.


Ozbay,


“Composite chiral metamaterials with negative refractive i


ndex and high values


of the figure of merit,” Opt. Express 20(6), 6146–


6156 (2012).


10.



V


.


Rogacheva,


V


.


A.


Fedotov,


A.


S.


Schwanecke,


and


N.


I.


Zheludev,


“Giant


gyrotropy due to electromagnetic-


field coupling in a bilayered chiral structure,”


Phys. Rev. Lett. 97(17), 177401 (2006).


11.



K.


Song,


X.


Zhao,


Q.


Fu,


Y


.


Liu,


and


W.


Zhu,


“Wide


-angle


90°


-polarization


rotator using chiral metamaterial with negative refractive index,” J. Electromagn.


Waves Appl. 26(14



15), 1967



1976 (2012).


12.



M.


Decker,


M.


W.


Klein,


M.


Wegener


,


and


S.


Linden,


“Circular


dichroism


of


planar chiral magnetic metamaterials,” Opt. Lett. 32(7), 856–


858 (2007).


13.



D. H. Kwon, P. L. Werner, and D. H. Werner, “Optical planar chiral metamaterial


designs


for


strong


circular


dichroism


and


polarization


rotation


,”


Opt.


Express


16(16), 11802



11807 (2008).


14.



M. Saba, M. Thiel, M. D. Turner, S. T. Hyde, M. Gu, K. Grosse- Brauckmann, D.


N. Neshev, K. Mecke, and G


. E. Schr?


der-


Turk, “Circular dichroism in biological


photonic crystals and cubic chiral nets,” Phys. Rev. Le


tt. 106(10), 103902 (2011).


15.



Y


. Zhao, M. A. Belkin, and A. Alù, “Twisted optical metamaterials for planarized


ultrathin broadband circular polarizers,” Nat. Commun. 3, 870–


876 (2012).


16.



E.


Plum,


V


.


A.


Fedotov,


and


N.


I.


Zheludev,


“Optical


activity


in


extrinsi


cally


chiral metamaterial,” Appl. Phys. Lett. 93(19), 191911 (2008).



17.



M.


Mutlu,


A.


E.


Akosman,


A.


E.


Serebryannikov,


and


E.


Ozbay,


“Asymmetric


transmission of linearly polarized waves and polarization angle dependent wave


rotation using a chiral metamateria


l,” Opt. Express 19(15), 14290–


14299 (2011).


18.



M.


Mutlu


and


E.


Ozbay,


“A


transparent


90°


polarization


rotator


by


combining


chirality and electromagnetic wave tunneling,” Appl. Phys. Lett. 100(5), 051909


(2012).



19.



V


. Shadrivov, “Pure nonlinear optical activity



in metamaterials,” Appl. Phys. Lett.


101(4), 041911 (2012).



20.



J. Zhou, D. R. Chowdhury, R. Zhao, A. K. Azad, H. T. Chen, C. M. Soukoulis, A.


J.


Taylor,


and


J.


F.


O?Hara,


“Terahertz


chiral


metamaterials


with


giant


and


dynamically tunable optical activity,”


Phys. Rev. B 86(3), 035448 (2012).


21.



Gong


B,


Zhao


X,


Pan


Z,


Li


S,


Wang


X,


Zhao


Y


and


Luo


C,


“A


visible


metamaterial fabricated by self-


assembly method,”


2014 Sci. Rep. 4 4713



22.



Song K, Zhao X, Liu Y


, Fu Q and Luo C,


“A frequency


-tunable 90°


-polarization


rotat


ion


device


using


composite


chiral


metamaterials,”


Appl.


Phys.


Lett.


103


101908, 2013.


23.



Grady N K, Heyes J E, Chowdhury D R, Zeng Y


, Reiten M T, Azad A K, Taylor A


J, Dalvit D A R and Chen H T


, “Terahertz Metamaterials for Linear Polarization


Conversion and


Anomalous Refraction,”


Science 340, 1304-1307, 2013.


24.



Song K, Liu Y


, Fu Q, Zhao X, Luo C and Zhu W


, “90° polarization rotator with


rotation


angle


independent


of


substrate


permittivity


and


incident


angles


using


a


composite chiral metamaterial,”


2013 Opt. Express 21(6) 7439-7446


25.



G


.


Kenanakis,


R.


Zhao,


A.


Stavrinidis,


G


.


Konstantinidis,


N.


Katsarakis,


M.


Kafesaki, C. M. Soukoulis, and E. N. Economou, “Flexible chiral metamaterials


in


the


terahertz


regime:


a


comparative


study


of


various


designs,”


Optical


Materials Express 2(12), 1702-1712, 2012


26.



Kenanakis G


, Zhao R, Katsarakis N, Kafesaki M, Soukoulis C M and Economou


E N,


“Optically controllable THz chiral metamaterials,”


2014 Opt. Express 22(10)


12149-12159.


27.



Liu,


Xingchen;


Xu,


Yiqun;


Zhu,


Zheng;


Yu,


Shengwu;


Guan,


Chunying;


Shi,


Jinhui,


“Manipulating


wave


polarization


by


twisted


plasmonic


metamaterials,”


Optical Materials Express 4(5) 1003-1010, 2014.


28.



Oates, Thomas W. H.; Dastmalchi, Babak; Helgert, Christian; Reissmann, Lars;


Huebner,


Uwe;


Kley,


Ernst-Bernhard;


Verschuuren,


Marc


A.;


Bergmair,


Iris;


Pertsch,


Thomas;


Hingerl,


Kurt;


Hinrichs,


Karsten,


“Optical


activity


in


sub-


wavelength


metallic


grids


and


fishnet


metamaterials


in


the


conical


mount,”


2013 Optical Materials Express 3(4) 439-451.


29.



Wadsworth,


Samuel


L.;


Clem,


Paul


G


.;


Branson,


Eric


D.;


Boreman,


Glenn


D.


“Broadband


circularly


-polarized


infrared


emission


from


multilayer


metamaterials,” 2011, optical Materials Express 1(3) 466


-479


30.



Ding


M,


Wu


Y


,


Zhang


K,


Yu


H


and


Wu


Q


2014


J.


Phys.


D:


Appl.


Phys.


47


275302


-


-


-


-


-


-


-


-



本文更新与2021-02-01 18:52,由作者提供,不代表本网站立场,转载请注明出处:https://www.bjmy2z.cn/gaokao/594594.html

References(原始)的相关文章