CONDENSED MATTER: ELECTRONIC STRUCTURE, ELECTRICAL, MAGNETIC, AND OPTICAL PROPERTIES |
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BiS$_{2}$-Layer Gives Giant Birefringence: First-Principles Calculations |
Hai Wang** |
College of Materials Science and Engineering, Tongji University, Shanghai 201804
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Cite this article: |
Hai Wang 2016 Chin. Phys. Lett. 33 057802 |
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Abstract Birefringence attracts increasing attention due to its extensive applications in the imaging spectrometer, laser devices and optical components. Stimulated by the discovery of the giant birefringence (GBF) in LaOBiS$_{2}$ and AFBiS$_{2}$, we explore its origin by checking three compounds with and without the BiS$_{2}$ layer: Bi$_{2}$OS$_{2}$ (i.e., BiOBiS$_{2})$, Bi$_{2}$O$_{2}$S and LaOAlS$_{2}$. It is demonstrated that GBF appears only in the compounds with the BiS$_{2}$ layer and is furthermore confirmed in $M$OBiS$_{2}$ ($M$=Al, Ga, In and Sc) compounds. The result is useful for discovering/developing new-type birefringent crystal or even multifunctional materials.
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Received: 03 December 2015
Published: 31 May 2016
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[1] | http://en.wikipedia.org/wiki/Birefringence | [2] | Víllora E G, Shimamura K, Sumiya K and Ishibashi H 2009 Opt. Express 17 12362 | [3] | Chen X, Li M J, Venkataraman N, Gallagher M T, Wood W A, Crowley A M, Carberry J P, Zenteno L A and Koch K W 2004 Opt. Express 12 3888 | [4] | Labroille G, Pinel O, Treps N and Joffre M 2013 Opt. Express 21 21889 | [5] | Terada Y, Shimamura K and Fukuda T 1998 J. Alloys Compd. 275-277 697 | [6] | Weber M F, Stover C A, Gilbert L R, Nevitt T J and Ouderkirk A J 2000 Science 287 2451 | [7] | Yasuno Y, Makita S, Sutoh Y, Itoh M and Yatagai T 2002 Opt. Lett. 27 1803 | [8] | deBoer J F, Milner T E, vanGemert M J C and Nelson J S 1997 Opt. Lett. 22 934 | [9] | Zhang H, Zhang M, Pan S, Yang Z, Wang Z, Bian Q, Hou X, Yu H, Zhang F, Wu K, Yang F, Peng Q, Xu Z, Chang K B and Poeppelmeier K R 2015 Cryst. Growth Des. 15 523 | [10] | Wang H 2014 Chin. Phys. Lett. 31 047802 | [11] | Wang H 2015 Chin. Phys. Lett. 32 017801 | [12] | Phelan W A, Wallace D C, Arpino K E, Neilson J R, Livi K J, Seabourne C R, Scott A J and McQueen T M 2013 J. Am. Chem. Soc. 135 5372 | [13] | Zhang X, Liu Y, Zhang G, Wang Y, Zhang H and Huang F 2015 ACS Appl. Mater. Interfaces 7 4442 | [14] | Lei H, Wang K, Abeykoon M, Bozin E S and Petrovic C 2013 Inorg. Chem. 52 10685 | [15] | Awana V P S, Kumar A, Jha R, Kumar Singh S, Pal A, Shruti, Saha J and Patnaik S 2013 Solid State Commun. 157 21 | [16] | Koyama E, Nakai I and Nagashima K 1984 Acta Crystallogr. B 40 105 | [17] | Shannon R D 1976 Acta Crystallogr. A 32 751 | [18] | Li L, Li Y, Jin Y, Huang H, Chen B, Xu X, Dai J, Zhang L, Yang X, Zhai H, Cao G and Xu Z 2015 Phys. Rev. B 91 014508 | [19] | Mizuguchi Y, Fujihisa H, Gotoh Y, Suzuki K, Usui H, Kuroki K, Demura S, Takano Y, Izawa H and Miura O 2012 Phys. Rev. B 86 220510 | [20] | Xing J, Li S, Ding X, Yang H and Wen H H 2012 Phys. Rev. B 86 214518 | [21] | Jha R, Kumar A, Kumar Singh S and Awana V P S 2013 J. Supercond. Novel Magn. 26 499 | [22] | Lin X, Ni X, Chen B, Xu X, Yang X, Dai J, Li Y, Yang X, Luo Y, Tao Q, Cao G and Xu Z 2013 Phys. Rev. B 87 020504 | [23] | Yuke L, Xi L, Lin L, Nan Z, Xiaofeng X, Chao C, Jianhui D, Li Z, Yongkang L, Wenhe J, Qian T, Guanghan C and Zhuan X 2014 Supercond. Sci. Technol. 27 035009 |
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