[1] Cai W S and Shalaev V 2009 Optical Metamaterials: Fundamentals and Applications (New York: Springer) p. 59 [2] Choy T C 2015 Effective medium theory: principles and applications (2nd edn.) (Oxford: Oxford University Press) p. 237 [3] Liu X, Tyler T, Starr T, Starr A F, Jokerst N M and Padilla W J 2011 Phys. Rev. Lett. 107 045901 [4] Fabio A, Brian K, Dragoslav G and Gamani K 2012 Opt. Express 20 21025 [5] Cumali S, Furkan D, Muharrem K, Emin U, Oguzhan A and Ekrem D 2014 Opt. Commun. 322 137 [6] Aoni R A, Mahdiraji G A, Gang S Y, Shawon M J and Adikan F R M 2016 Procedia Engineering 140 1 [7] Bakir M, Karaaslan M, Dincer F, Delihacioglu K and Sabah C 2016 J. Mater. Sci. Mater. El 27 12091 [8] Wang Z and Cheng P 2019 Int. J. Heat Mass Transfer 140 453 [9] Yin N Q, Liu L, Lei J M, Jiang T T, Zhu L X and Xu X L 2013 Chin. Phys. B 22 097502 [10] Li W and Valentinev J 2014 Nano Lett. 14 3510 [11] Atsushi I and Takuo T 2015 Sci. Rep. 5 12570 [12] Liang Q, Wang T, Lu Z, Sun Q and Yu W 2013 Adv. Opt. Mater. 1 43 [13] Bağmancı M, Karaaslan M, Unal E, Akgol O, Karadag F and Sabah C 2017 Physica E 90 1 [14] Landy N I, Sajuyigbe S, Mock J J, Smith D R and Padilla W J 2008 Phys. Rev. Lett. 100 207402 [15] Ghandehari M B, Feiz N and Bolandpour H 2015 31st (ACES) IEEE pp. 1-2 [16] Ghandehari M B, Feiz N and Khazaei A A 2015 Int. J. Appl. Electrom. 48 77 [17] Bai R, Jin X R, Zhang Y Q, Zhang S and Youngpak L 2016 J. Nonlinear. Opt. Phys. 25 1650027 [18] Rufangura P and Sabah C 2016 IET Optoelectronics 10 211 [19] Liu Z, Liu G, Fu G, Liu X and Wang Y 2016 Opt. Express 24 5020 [20] Akselrod G M, Huang J, Hoang T B, Bowen P T, Su L, Smith D R and Mikkelsen M H 2015 Adv. Mater. 27 8028 [21] Liang Q, Fu Y, Xia X, Wang L and Gao R 2018 Mod. Phys. Lett. B 32 1750365 [22] Liu Z, Liu G, Liu X, Wang Y and Fu G 2018 Opt. Mater. 83 118 [23] Zhao Q, Zhou J, Zhang F and Lippens D 2009 Mater. Today 12 60 [24] Zhang C, Xu Y, Liu J, Li J, Xiang J, Li H, Li J, Dai Q, Lan S and Andrey E Miroshnichenko 2018 Nat. Commun. 9 1 [25] Lei S, Harris J T, Fenollosa R, Rodriguez I, Lu X, Korgel B A and Meseguer F 2013 Nat. Commun. 4 1 [26] Feng T, Xu Y, Zhang W and Miroshnichenko A E 2017 Phys. Rev. Lett. 118 173901 [27] Eberth J, Thomas H G, Brentano P, Lieder R M, Jager H M, Kammerling H, Berst M, Gutknecht D and Henck R 1996 Nucl. Instrum. Method A 369 135 [28] Duchene G, Beck F A, Twin P J, France G, Curien D, Han L, Beausang C W, Bentley M A, Nolan P J and Simpson J 1999 Nucl. Instrum. Method A 432 90 [29] Vetter K, Burks M, Cork C, Cunningham M, Chivers D, Hull E, Krings T, Manini H, Mihailescu L, Nelson K, Protic D, Valentine J and Wright D 2007 Nucl. Instrum. Method A 579 363 [30] Tommaso C, Matteo A and Schönert S 2021 The European Physical J. C 81 1 [31] Bao L, Dong X, Shum P P and Shen C 2018 Proc. SPIE 10849 18 [32] Laine J J, Stoner R E, Saltzman A J, Mccarthy T J and Smith S P 2018 U.S. Patent Application 15 403 [33] Wang X, Zhu Y J, Jiang C, Guo Y X and Zhang Z Y 2019 Opt. Express 27 20649 [34] Duan J, Huang H, Dong B, Jung D, Norman J C, Bowers J E and Grillot F 2019 IEEE Photon. Tech. Lett. 31 345 [35] Zhou X, Yu Q and Peng W 2019 Opt. Laser. Technol. 120 105686 [36] Demontis V, Rocci M, Donarelli M, Maiti R, Zannier V, Beltram F, Sorba L, Roddaro S, Rossella F and Baratto C 2019 Sensors 19 2994 [37] Weast R C 2004 Handbook of Chemistry and Physics (Florida: CRC Press) p. 1800 [38] Palik E D 1998 Handbook of Optical Constants of Solids (Boston: Academic Press) p. 189 [39] Cheng W H, Wang S C, Yang Y D, Chi S, Sheen M T and Kuang J H 1997 IEEE T. Comp. Pack. Man. 20 396 [40] Lin Y Y, Cui Y X, Ding F, Fung K H, Ji T, Li D D and Hao Y Y 2017 Opt. Mater. Express 7 606 [41] Naik G V, Schroeder J L, Ni X, Kildishev A V, Sands T D and Boltasseva A 2012 Opt. Mater. Express 2 478 [42] Liu Z, Liu G, Fu G, Liu X and Wang Y 2016 Opt. Express 24 5020 [43] Dincer F, Akgol Q, Karaaslan M, Unal E and Sabah C 2014 Prog. Electromagn. Res. 144 93 [44] Rufangura P and Sabah C 2016 IET. Optoelectron. 10 211 |