Photonics Research, 2015, 3 (2): 020000A1, Published Online: Jan. 6, 2016  

Sign of differential reflection and transmission in pump-probe spectroscopy of graphene on dielectric substrate Download: 1124次

Author Affiliations
1 The Key Laboratory of Weak Light Nonlinear Photonics, Ministry of Education, Teda Applied Physics Institute and School of Physics, Nankai University, Tianjin 300457, China
2 College of Science, Tianjin Polytechnic University, Tianjin 300387, China
3 The Key Laboratory of Functional Polymer Materials and Center for Nanoscale Science & Technology, Institute of Polymer Chemistry, College of Chemistry, Nankai University, Tianjin 300071, China
Copy Citation Text

Chengmin Gao, Xin Zhao, Jun Yao, Xiao-Qing Yan, Xiang-Tian Kong, Yongsheng Chen, Zhi-Bo Liu, Jian-Guo Tian. Sign of differential reflection and transmission in pump-probe spectroscopy of graphene on dielectric substrate[J]. Photonics Research, 2015, 3(2): 020000A1.

References

[1] S. F. Shi, T. T. Tang, B. Zeng, L. Ju, Q. Zhou, A. Zettl, and F. Wang, “Controlling graphene ultrafast hot carrier response from metal-like to semiconductor-like by electrostatic gating,” Nano Lett. 14, 1578–1582 (2014).

[2] D. Brida, A. Tomadin, C. Manzoni, Y. J. Kim, A. Lombardo, S. Milana, R. R. Nair, K. S. Novoselov, A. C. Ferrari, G. Cerullo, and M. Polini, “Ultrafast collinear scattering and carrier multi-plication in graphene,” Nat. Commun. 4, 1987 (2013).

[3] M. Breusing, S. Kuehn, T. Winzer, E. Malic, F. Milde, N. Severin, J. P. Rabe, C. Ropers, A. Knorr, and T. Elsaesser, “Ultrafast non-equilibrium carrier dynamics in a single graphene layer,” Phys. Rev. B 83, 153410 (2011).

[4] I. Gierz, J. C. Petersen, M. Mitrano, C. Cacho, I. C. E. Turcu, E. Springate, A. St.hr, A. K.hler, U. Starke, and A. Cavalleri, “Snapshots of non-equilibrium Dirac carrier distributions in graphene,” Nat. Mater. 12, 1119–1124 (2013).

[5] K. J. Tielrooij, J. C. W. Song, S. A. Jensen, A. Centeno, A. Pesquera, A. Zurutuza Elorza, M. Bonn, L. S. Levitov, and F. H. L. Koppens, “Photoexcitation cascade and multiple hot-carrier generation in graphene,” Nat. Phys. 9, 248–252 (2013).

[6] A. Tomadin, D. Brida, G. Cerullo, A. C. Ferrari, and M. Polini, “Nonequilibrium dynamics of photoexcited electrons in gra-phene: collinear scattering, Auger processes, and the impact of screening,” Phys. Rev. B 88, 035430 (2013).

[7] S. Ulstrup, J. C. Johannsen, F. Cilento, J. A. Miwa, A. Crepaldi, M. Zacchigna, C. Cacho, R. Chapman, E. Springate, S. Mammadov, F. Fromm, C. Raidel, T. Seyller, F. Parmigiani, M. Grioni, P. D. C. King, and P. Hofmann, “Ultrafast dynamics of massive Dirac fer-mions in bilayer graphene,” Phys. Rev. Lett. 112, 257401 (2014).

[8] K. Chen, H. Li, L.-P. Ma, W. Ren, T.-F. Chung, H.-M. Cheng, Y. P. Chen, and T. Lai, “Diversity of ultrafast hot-carrier-induced dy-namics and striking sub-femtosecond hot-carrier scattering times in graphene,” Carbon 72, 402–409 (2014).

[9] K. Chen, H. Li, L.-P. Ma, W. Ren, J.-Y. Zhou, H.-M. Cheng, and T. Lai, “Ultrafast linear dichroism-like absorption dynamics in Gao et al. graphene grown by chemical vapor deposition,” J. Appl. Phys. 115, 203701 (2014).

[10] B. Gao, G. Hartland, T. Fang, M. Kelly, D. Jena, H. L. Xing, and L. B. Huang, “Studies of intrinsic hot phonon dynamics in suspended graphene by transient absorption microscopy,” Nano Lett. 11, 3184–3189 (2011).

[11] L. B. Huang, B. Gao, G. Hartland, M. Kelly, and H. L. Xing, “Ultrafast relaxation of hot optical phonons in monolayer and multilayer graphene on different substrates,” Surf. Sci. 605, 1657–1661 (2011).

[12] M. M. Leandro, M. Kin Fai, A. H. C. Neto, N. M. R. Peres, and F. H. Tony, “Observation of intra-and inter-band transitions in the transient optical response of graphene,” New J. Phys. 15, 015009 (2013).

[13] T. Li, L. Luo, M. Hupalo, J. Zhang, M. C. Tringides, J. Schmalian, and J. Wang, “Femtosecond population inversion and stimulated emission of dense Dirac fermions in graphene,” Phys. Rev. Lett. 108, 167401 (2012).

[14] R. W. Newson, J. Dean, B. Schmidt, and H. M. van Driel, “Ultra-fast carrier kinetics in exfoliated graphene and thin graphite films,” Opt. Express 17, 2326–2333 (2009).

[15] B. A. Ruzicka, S. Wang, J. W. Liu, K. P. Loh, J. Z. Wu, and H. Zhao, “Spatially resolved pump-probe study of single-layer graphene produced by chemical vapor deposition [Invited],” Opt. Mater. Express 2, 708–716 (2012).

[16] J. Shang, S. Yan, C. Cong, H.-S. Tan, T. Yu, and G. G. Gurzadyan, “Probing near Dirac point electron–phonon interaction in gra-phene,” Opt. Mater. Express 2, 1713–1722 (2012).

[17] J. Z. Shang, Z. Q. Luo, C. X. Cong, J. Y. Lin, T. Yu, and G. G. Gurzadyan, “Femtosecond UV-pump/visible-probe measure-ments of carrier dynamics in stacked graphene films,” Appl. Phys. Lett. 97, 163103 (2010).

[18] J. Z. Shang, T. Yu, J. Y. Lin, and G. G. Gurzadyan, “Ultrafast elec-tron-optical phonon scattering and quasiparticle lifetime in CVD-grown graphene,” ACS Nano 5, 3278–3283 (2011).

[19] X.-Q. Yan, J. Yao, Z.-B. Liu, X. Zhao, X.-D. Chen, C. Gao, W. Xin, Y. Chen, and J.-G. Tian, “Evolution of anisotropic-to-isotropic photoexcited carrier distribution in graphene,” Phys. Rev. B 90, 134308 (2014).

[20] F. Kadi, T. Winzer, E. Malic, A. Knorr, F. G.ttfert, M. Mittendorff, S. Winnerl, and M. Helm, “Microscopic description of intraband absorption in graphene: the occurrence of transient negative differential transmission,” Phys. Rev. Lett. 113, 035502 (2014).

[21] H. Yang, X. Feng, Q. Wang, H. Huang, W. Chen, A. T. S. Wee, and W. Ji, “Giant two-photon absorption in bilayer graphene,” Nano Lett. 11, 2622–2627 (2011).

[22] H. Zhang, D. Tang, L. Zhao, Q. Bao, and K. Loh, “Large energy mode locking of an erbium-doped fiber laser with atomic layer graphene,” Opt. Express 17, 17630–17635 (2009).

[23] B. Y. Sun and M. W. Wu, “Negative differential transmission in graphene,” Phys. Rev. B 88, 235422 (2013).

[24] P. A. George, J. Strait, J. Dawlaty, S. Shivaraman, M. Chandrashekhar, F. Rana, and M. G. Spencer, “Ultrafast optical-pump terahertz-probe spectroscopy of the carrier relaxation and recombination dynamics in epitaxial graphene,” Nano Lett. 8, 4248–4251 (2008).

[25] D. Svintsov, V. Ryzhii, A. Satou, T. Otsuji, and V. Vyurkov, “Carrier-carrier scattering and negative dynamic conductivity in pumped graphene,” Opt. Express 22, 19873–19886 (2014).

[26] K. F. Mak, M. Y. Sfeir, Y. Wu, C. H. Lui, J. A. Misewich, and T. F. Heinz, “Measurement of the optical conductivity of graphene,” Phys. Rev. Lett. 101, 196405 (2008).

[27] J. W. Weber, V. E. Calado, and M. C. M. van de Sanden, “Optical constants of graphene measured by spectroscopic ellipsome-try,” Appl. Phys. Lett. 97, 091904 (2010).

[28] X. Wang, M. Zhao, and D. D. Nolte, “Optical contrast and clarity of graphene on an arbitrary substrate,” Appl. Phys. Lett. 95, 081102 (2009).

[29] M. Born and E. Wolf, Principles of Optics (Cambridge Univer-sity, 1999).

[30] M. Bruna and S. Borini, “Optical constants of graphene layers in the visible range,” Appl. Phys. Lett. 94, 031901 (2009).

[31] F. J. Nelson, V. K. Kamineni, T. Zhang, E. S. Comfort, J. U. Lee, and A. C. Diebold, “Optical properties of large-area polycrystalline chemical vapor deposited graphene by spectro-scopic ellipsometry,” Appl. Phys. Lett. 97, 253110 (2010).

[32] Q. Ye, J. Wang, Z. Liu, Z.-C. Deng, X.-T. Kong, F. Xing, X.-D. Chen, W.-Y. Zhou, C.-P. Zhang, and J.-G. Tian, “Polarization-dependent optical absorption of graphene under total internal reflection,” Appl. Phys. Lett. 102, 021912 (2013)

[33] V. G. Kravets, A. N. Grigorenko, R. R. Nair, P. Blake, S. Anissimova, K. S. Novoselov, and A. K. Geim, “Spectroscopic ellipsometry of graphene and an exciton-shifted van Hove peak in absorption,” Phys. Rev. B 81, 155413 (2010).

[34] “Fabry–Perot. interferometer,” http://en.wikipedia.org/wiki/Fabry%E2%80%93P%C3%A9rot_interferometer.

[35] “Coherence length,” http://en.wikipedia.org/wiki/Coherence_length.

[36] Q. Cui, F. Ceballos, N. Kumar, and H. Zhao, “Transient absorptionmicroscopy of monolayer and bulk WSe2,” ACS Nano 8,2970–2976 (2014).

[37] N. Kumar, J. He, D. He, Y. Wang, and H. Zhao, “Valley and spindynamics in MoSe2 two-dimensional crystals,” Nanoscale 6,12690–12695 (2014).

[38] R. Wang, B. A. Ruzicka, N. Kumar, M. Z. Bellus, H.-Y. Chiu, and H. Zhao, “Ultrafast and spatially resolved studies of charge car-riers in atomically thin molybdenum disulfide,” Phys. Rev. B 86, 045406 (2012).

Chengmin Gao, Xin Zhao, Jun Yao, Xiao-Qing Yan, Xiang-Tian Kong, Yongsheng Chen, Zhi-Bo Liu, Jian-Guo Tian. Sign of differential reflection and transmission in pump-probe spectroscopy of graphene on dielectric substrate[J]. Photonics Research, 2015, 3(2): 020000A1.

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!