Chinese Physics B, Volume. 29, Issue 10, (2020)
An improved method for the investigation of high-order harmonic generation from graphene
[1] C L Xia, Y Y Lan, Q Q Li, X Y Miao. Chin. Phys. B, 28(2019).
[2] H D Zhang, J Guo, Y Shi, H Du, H F Liu, X R Huang, X S Liu, Jing Jun. Chin. Phys. Lett., 34(2017).
[3] Y Pan, F M Guo, Y J Yang, D J Ding. Chin. Phys. B, 28(2019).
[4] C X Guo, Z H Jiao, X X Zhou, P C Li. Acta Phys. Sin., 69(2020).
[5] T Popmintchev, M C Chen, D Popmintchev, P Arpin, S Brown, S Ališauskas, G Andriukaitis, T Balčiunas, Q D Mücke, A Pugzlys, A Baltuška, B Shim, S E Schrauth, A Gaeta, C Hernández-García, L Plaga, A Becker, A Jaron-Becker, M M Murnane, H C Kapteyn. Science, 336, 1287(2012).
[6] L X He, P F Lan, A T Le, B N Wang, B C Wang, X S Zhu, P X Lu, C D Lin. Phys. Rev. Lett., 121(2018).
[7] A D Shiner, B E Schmidt, C Trallero-Herrero, H J Wörner, S Patchkovskii, P B Corkum, J C Kieffer, F Légaré, D M Villeneuve. Nat. Phys., 7, 464(2001).
[8] G L Wang, C Jin, A T Le, C D Lin. Phys. Rev. A, 86(2012).
[9] H J Wörner, J B Bertrand, B Fabre, J Higuet, H Ruf, A Dubrouil, S Patchkovskii, M Spanner, Y Mairesse, V Blanchet, E Mevel, E Constant, P B Corkum, D M Villeneuve. Science, 334, 208(2011).
[10] J Itatani, J Levesque, D Zeidler, H Niikura, H Pepin, J Kieffer, P B Corkum, D Villeneuve. Nature, 432, 867(2004).
[11] S Baker, J Robinson, C Haworth, H Teng, R Smith, C Chirila, M Lein, J Tisch, J Marangos. Science, 312, 424(2006).
[12] O Smirnova, Y Mairesse, S Patchkovskii, N Dudovich, D Villeneuve, P B Corkum, M Y Ivanov. Nature, 460, 972(2009).
[13] B Vodungbo, A B Sardinha, J Gautier, G Lambert, M Lozano, S Sebban, E Meltchakov, . Europhys. Lett., 94(2011).
[14] P B Corkum, F Krausz. Nat. Phys., 3, 381(2007).
[15] M Hentschel, R Kienberger, C Spielmann, G Reider, N Milosevic, T Brabec, P B Corkum, U Heinzmann, M Drescher, F Krausz. Nature, 414, 509(2001).
[16] F Krausz, M Ivanov. Rev. Mod. Phys., 81, 163(2009).
[17] H Song, X Y Lü, R B Zhu, G Chen. Acta Phys. Sin., 68(2019).
[18] C L Xia, X Y Miao. Chin. Phys. Lett., 32(2015).
[19] X Y Lü, R B Zhu, H Song, N Su, G Chen. Acta Phys. Sin., 68(2019).
[20] P B Corkum. Phys. Rev. Lett., 71, 1994(1993).
[21] G Dou, Y Yu, M Guo, Y M Zhang, Z Sun, Y X Li. Chin. Phys. Lett., 34(2017).
[22] J J Huang, L Su, S Z Pu, S A Sun, L Y Zhang. Chin. Phys. Lett., 33(2016).
[23] B Kang, S T Hwang. Chin. Phys. Lett., 33(2016).
[24] L K Wang, F L Duan. Acta Phys. Sin., 68(2019).
[25] T J Liao, B H Lin, Y H Wang. Acta Phys. Sin., 68(2019).
[26] T H Wang, A Li, B Han. Acta Phys. Sin., 68(2019).
[27] F Xu, L Zhang. Chin. Phys. B, 28(2019).
[28] R X Hu, X L Ma, C H An, J Liu. Chin. Phys. B, 28(2019).
[29] S Ghimire, A D DiChiara, E Sistrunk, G Ndabashimiye, U B Szafruga, A Mohammad, P Agostini, L F DiMauro, D A Reis. Phys. Rev. A, 85(2012).
[30] G Vampa, C R McDonald, G Orlando, D D Klug, P B Corkum, T Brabec. Phys. Rev. Lett., 113(2014).
[31] M Wu, D A Browne, K J Schafer, M B Gaarde. Phys. Rev. A, 94(2016).
[32] M Wu, S Ghimire, D A Reis, K J Schafer, M B Gaarde. Phys. Rev. A, 94(2015).
[33] S Ghimire, D A Reis. Nature, 15, 10(2019).
[34] C R McDonald, G Vampa, P B Corkum, T Brabec. Phys. Rev. A, 92(2015).
[35] G Vampa, C R McDonald, G Orlando, P B Corkum, T Brabec. Phys. Rev. B, 91(2015).
[36] T Tamaya, A Ishikawa, T Ogawa, K Tanaka. Phys. Rev. Lett., 116(2016).
[37] T Ikemachi, Y Shinohara, T Sato, J Yumoto, M Kuwata-Gonokami, K L Ishikawa. Phys. Rev. A, 95(2017).
[38] C R McDonald, G Vampa, P B Corkum, T Brabec. Phys. Rev. Lett., 118(2017).
[39] G Vampa, T G Hammond, N Thiré, B E Schmidt, F Légaré, C R McDonald, T Brabec, D D Klug, P B Corkum. Phys. Rev. Lett., 115(2015).
[40] G Vampa, C R McDonald, G Orlando, D D Klug, P B Corkum, T Brabec. Phys. Rev. Lett., 113(2014).
[41] Z Guan, X X Zhou, X B Bian. Phys. Rev. A, 93(2016).
[42] J Z Jin, X R Xiao, H Liang, M X Wang, S G Chen, Q Gong, L Y Peng. Phys. Rev. A, 97(2018).
[43] D N Tancogne, O D Mücke, F X K?rtner, A Rubio. Phys. Rev. Lett., 118(2017).
[44] T T Luu, M Garg, S Y Kruchinin, A Moulet, M T Hassan, E Goulielmakis. Nature, 521, 498(2015).
[45] G Ndabashimiye, S Ghimire, M Wu, D A Browne, K J Schafer, M B Gaarde, D A Reis. Nat. Phys., 13, 345(2017).
[46] M Sivis, M Taucer, G Vampa, K Johnston, A Staudte, A Y Naumov, D M Villeneuve, C Ropers, P B Corkum. Science, 357, 330(2017).
[47] D N Tancogne, O D Mücke, F X Kärtner, A Rubio. Nat. Commun., 8, 745(2017).
[48] M Taucer, T J Hammond, P B Corkum, G Vampa, C Couture, N Thiré, B E Schmidt, F Légaré, H Selvi, N Unsuree, B Hamilton, T J Echtermeyer, M A Denecke. Phys. Rev. B, 96(2017).
[49] J L Yang, Q C Yuan, R F Chen, H L Fang, F J Xiao, J T Li, B Q Jiang, J L Zhao, X T Gan. Acta Phys. Sin., 68(2019).
[50] L Liu, J Zhao, J M Yuan, Z X Zhao. Chin. Phys. B, 28(2019).
[51] L Li, P F Lan, X S Zhu, T F Huang, Q B Zhang, M Lein, P X Lu. Phys. Rev. Lett., 122(2019).
[52] A W Zeng, X B Bian. Phys. Rev. Lett., 124(2020).
[53] X Q Wang, Y Xu, X H Huang, X B Bian. Phys. Rev. A, 98(2018).
[54] S C Jiang, J G Chen, H Wei, C Yu, R F Lu, C D Lin. Phys. Rev. Lett., 120(2018).
[55] S C Jiang, H Wei, J G Chen, C Yu, R F Lu, C D Lin. Phys. Rev. A, 96(2017).
[56] J B Li, X Zhang, S L Fu, Y K Feng, B T Hu, H C Du. Phys. Rev. A, 100(2019).
[57] H Q Wang, Y K Feng, S L Fu, J B Li, X Zhang, H C Du. Phys. Rev. A, 99(2019).
[58] H K Kelardeh, V Apalkov, M I Stockman. Phys. Rev. B, 91(2015).
[59] C Liu, Y Zheng, Z Zeng, R Li. Phys. Rev. A, 97(2018).
[60] Ó Zurrón, A Picón, L Plaja. New J. Phys., 20(2018).
[61] Ó Zurrón, R Boyero-García, C Hernández-García, A Picón, L Plaja. Opt. Express, 27, 7776(2019).
[62] K L Ishikawa. Phys. Rev. B, 82(2010).
[63] P R Wallace. Phys. Rev., 71, 622(1947).
[64] J C Slonczewski, P R Weiss. Phys. Rev., 109, 272(1958).
[65] R Saito, G Dresselhaus, M Dresselhaus. Physical Properties of Carbon Nanotubes, 17-29(1999).
[66] K L Ishikawa. New J. Phys, 15(2013).
[67] T Higuchi, C Heide, K Ullmann, H B Weber, P Hommelhoff. Nature, 550, 224(2017).
[68] D Dimitrovski, L Madsen, T Pedersen. Phys. Rev. B, 95(2017).
[69] I Naib, J E Sipe, M M Dignam. Phys. Rev. B, 90(2016).
[70] L A Chizhova, F Libisch, J Burgdörfe. Phys. Rev. B, 94(2016).
[71] N Yoshikawa, T Tamaya, K Tanaka. Science, 356, 736(2017).
[72] K S Budil, P Salières, A L’Huillier, T Ditmire, M D Perry. Phys. Rev. A, 48(2003).
[73] O Schubert, M Hohenleutner, F Langer, B Urbanek, C Lange, U Huttner, D Golde, T Meier, M Kira, S W Koch, R Huber. Nat. Photon., 8, 119(2014).
[74] M Z Hasan, C L Kane. Rev. Mod. Phys., 82, 3045(2010).
[75] L Chen. Chin. Phys. B, 28(2019).
Get Citation
Copy Citation Text
Zhong Guan, Lu Liu, Guo-Li Wang, Song-Feng Zhao, Zhi-Hong Jiao, Xiao-Xin Zhou. An improved method for the investigation of high-order harmonic generation from graphene[J]. Chinese Physics B, 2020, 29(10):
Received: Apr. 26, 2020
Accepted: --
Published Online: Apr. 21, 2021
The Author Email: Wang Guo-Li (zhouxx@nwnu.edu.cn)