[1] V. L. Y. Loke and M. P. Menguc, Journal of the Optical Society of America a-Optics Image Science and Vision 27, 2293 (2010).
[2] T. W. H. Oates and A. Mucklich, Nanotechnology 16, 2606 (2005).
[3] K. A. Willets and R. P. Van Duyne, Annual Review of Physical Chemistry 58, 267 (2007).
[4] S. S. Acimovic, M. P. Kreuzer, M. U. Gonzalez and R. Quidant, Acs Nano 3, 1231 (2009).
[5] A. Bansal and S. S. Verma, Aip Advances 4, 14 (2014).
[6] V. Amendola, R. Pilot, M. Frasconi, O. M. Marago and M. A. Iati, Journal of Physics-Condensed Matter 29, 48 (2017).
[7] J. H. Yoon, F. Selbach, L. Langolf and S. Schlucker, Small 14, 5 (2018).
[8] H.-y. Zhang, S.-g. Yu and M.-j. Bian, Optoelectronics Letters 14, 241 (2018).
[9] I. D. Mayergoyz, Physica B-Condensed Matter 407, 1307 (2012).
[10] J. F. L. Santos, M. J. L. Santos, A. Thesing, F. Tavares, J. Griep and M. R. F. Rodrigues, Quimica Nova 39, 1098 (2016).
[11] V. Amendola, Physical Chemistry Chemical Physics 18, 2230 (2016).
[12] J.-j. Wang and Z.-h. Jia, Optoelectronics Letters 15, 439 (2019).
[13] T. Karakouz, A. B. Tesler, T. A. Bendikov, A. Vaskevich and I. Rubinstein, Advanced Materials 20, 3893 (2008).
[14] K. A. Willets, A. J. Wilson, V. Sundaresan and P. B. Joshi, Chemical Reviews 117, 7538 (2017).
[15] J. A. Scholl, A. Garcia-Etxarri, A. L. Koh and J. A. Dionne, Nano Letters 13, 564 (2013).
[16] S. Kadkhodazadeh, J. R. de Lasson, M. Beleggia, H. Kneipp, J. B. Wagner and K. Kneipp, Journal of Physical Chemistry C 118, 5478 (2014).
[17] S. Lerch and B. M. Reinhard, Nature Communications 9, 1608 (2018).
[18] K. H. Su, Q. H. Wei, X. Zhang, J. J. Mock, D. R. Smith and S. Schultz, Nano Letters 3, 1087 (2003).
[19] E. R. Encina and E. A. Coronado, Journal of Physical Chemistry C 114, 3918 (2010).
[20] Y. Ruan, K. Li, Q. Lin and T. Zhang, Chinese Physics Letters 35, 4 (2018).
[21] B. T. Draine and P. J. Flatau, Journal of the Optical Society of America a-Optics Image Science and Vision 11, 1491 (1994).
[22] M. A. Yurkin and A. G. Hoekstra, Journal of Quantitative Spectroscopy & Radiative Transfer 106, 558 (2007).
[23] M. A. Yurkin and A. G. Hoekstra, Journal of Quantitative Spectroscopy & Radiative Transfer 112, 2234 (2011).
[24] O. A. Yeshchenko and A. O. Pinchuk, Reviews in Plasmonics 2017, C. D. Geddes, ed., Springer International Publishing, Cham, 285 (2019).
[25] B. T. Draine and J. Goodman, Astrophysical Journal 405, 685 (1993).
[26] D. W. Mackowski, Journal of the Optical Society of America a-Optics Image Science and Vision 19, 881 (2002).
[27] A. B. Evlyukhin, C. Reinhardt and B. N. Chichkov, Physical Review B 84, 8 (2011).
[28] B. J. Frey, D. B. Leviton, T. J. Madison, Q. Gong and M. Tecza, Cryogenic Optical Systems and Instruments Xii, J. B. Heaney and L. G. Burriesci, ed., Spie-Int Soc. Optical Engineering, Bellingham, 2007.
[29] W. Y. Rao, Q. Li, Y. Z. Wang, T. Li and L. J. Wu, Acs Nano 9, 2783 (2015).
[30] C. Jing, Z. Gu, Y. L. Ying, D. W. Li, L. Zhang and Y. T. Long, Analytical Chemistry 84, 4284 (2012).