110
5 High-Field Terahertz Time-Domain Spectroscopy …
40. Burdanova MG et al (2019) ACS Photon 6:1058
41. Marshall KP et al (2018) Mater Chem Front 2:1515
42. Milot RL et al (2018) Adv Mater 30:1804506
43. Monti M et al (2018) J Phys Chem C 122:20669
44. Lloyd-Hughes J et al (2017) Nano Lett 17:2506
45. Jones SP et al (2014) Nat Commun 5:3787
46. Jones SPP et al (2014) Phys Rev B 90:064405
47. Mosley CDW, Failla M, Prabhakaran D, Lloyd-Hughes J (2017) Sci Rep 7:12337
48. Kleinman D, Auston D (1984) IEEE J Quantum Electron 20:964
49. Auston DH, Cheung KP, Valdmanis JA, Kleinman DA (1984) Phys Rev Lett 53:1555
50. Fülöp JA, Pálfalvi L, Almási G, Hebling J (2010) Opt Express 18:12311
51. Fülöp JA et al (2014) Opt Express 22:20155
52. Pálfalvi L, Fülöp JA, Almási G, Hebling J (2008) Appl Phys Lett 92:171107
53. Hirori H, Tanaka K (2016) J Phys Soc Jpn 85:082001
54. Hebling J, Stepanov A, Almási G, Bartal B, Kuhl J (2004) Appl Phys B: Lasers Opt 78:593
55. Littler CL, Seiler DG (1985) Appl Phys Lett 46:986
56. Adachi S (1999) Indium antimonide (InSb). Optical constants of crystalline and amorphous
semiconductors. Springer, US, Boston, pp 268–278
57. Rode DL (1971) Phys Rev B 3:3287
58. Ilani S, McEuen PL (2010) Ann Rev Condens Matter Phys 1:1
59. Amori AR, Hou Z, Krauss TD (2018) Ann Rev Phys Chem 69:81
60. De Volder MFL, Tawfick SH, Baughman RH, Hart AJ (2013) Science (New York, N.Y.) 339:535
61. Suzuki D, Oda S, Kawano Y (2016) Nat Photon 10:809
62. Hartmann RR, Kono J, Portnoi ME (2014) Nanotechnology 25:322001
63. Wang R, Xie L, Hameed S, Wang C, Ying Y (2018) Carbon 132:42
64. Ulbricht R, Hendry E, Shan J, Heinz TF, Bonn M (2011) Rev Mod Phys 83:543
65. Lloyd-Hughes J, Jeon T-I (2012) J Infrared. Millim Terahertz Waves 33:871
66. Morimoto T et al (2014) ACS Nano 8:9897
67. Blackburn JL et al (2008) ACS Nano 2:1266
68. Mustonen K et al (2012) Beilstein J Nanotechnol 3:692
69. Bârsan OA, Hoffmann GG, van der Ven LGJ, de With G (2016) Adv Funct Mater 26:4377
70. Zhang C et al (2013) J Phys 15:055017
71. Nasibulin AG, Moisala A, Brown DP, Jiang H, Kauppinen EI (2005) Chem Phys Lett 402:227
72. Yang L, Anantram MP, Han J, Lu JP (1999) Phys Rev B 60:13874
73. Gyungseon S et al (2006) CNTbands
74. Chanthbouala A et al (2012) Nat Mater 11:860
75. Fusil S, Garcia V, Barthélémy A, Bibes M (2014) Ann Rev Mater Res 44:91
76. Beaurepaire E, Merle J-C, Daunois A, Bigot J-Y (1996) Phys Rev Lett 76:4250
77. Kirilyuk A, Kimel AV, Rasing T (2010) Rev Mod Phys 82:2731
78. Mochizuki M, Furukawa N, Nagaosa N (2010) Phys Rev Lett 104:177206
79. Kubacka T et al (2014) Science (New York, N.Y.) 343:1333
80. Kimura T, Sekio Y, Nakamura H, Siegrist T, Ramirez AP (2008) Nat Mater 7:291
81. Stein J et al (2015) J Phys: Condens Matter 27:446001
82. Kuz’menko AB et al (2001) Phys Rev B 63:094303
5 High-Field Terahertz Time-Domain Spectroscopy …
40. Burdanova MG et al (2019) ACS Photon 6:1058
41. Marshall KP et al (2018) Mater Chem Front 2:1515
42. Milot RL et al (2018) Adv Mater 30:1804506
43. Monti M et al (2018) J Phys Chem C 122:20669
44. Lloyd-Hughes J et al (2017) Nano Lett 17:2506
45. Jones SP et al (2014) Nat Commun 5:3787
46. Jones SPP et al (2014) Phys Rev B 90:064405
47. Mosley CDW, Failla M, Prabhakaran D, Lloyd-Hughes J (2017) Sci Rep 7:12337
48. Kleinman D, Auston D (1984) IEEE J Quantum Electron 20:964
49. Auston DH, Cheung KP, Valdmanis JA, Kleinman DA (1984) Phys Rev Lett 53:1555
50. Fülöp JA, Pálfalvi L, Almási G, Hebling J (2010) Opt Express 18:12311
51. Fülöp JA et al (2014) Opt Express 22:20155
52. Pálfalvi L, Fülöp JA, Almási G, Hebling J (2008) Appl Phys Lett 92:171107
53. Hirori H, Tanaka K (2016) J Phys Soc Jpn 85:082001
54. Hebling J, Stepanov A, Almási G, Bartal B, Kuhl J (2004) Appl Phys B: Lasers Opt 78:593
55. Littler CL, Seiler DG (1985) Appl Phys Lett 46:986
56. Adachi S (1999) Indium antimonide (InSb). Optical constants of crystalline and amorphous
semiconductors. Springer, US, Boston, pp 268–278
57. Rode DL (1971) Phys Rev B 3:3287
58. Ilani S, McEuen PL (2010) Ann Rev Condens Matter Phys 1:1
59. Amori AR, Hou Z, Krauss TD (2018) Ann Rev Phys Chem 69:81
60. De Volder MFL, Tawfick SH, Baughman RH, Hart AJ (2013) Science (New York, N.Y.) 339:535
61. Suzuki D, Oda S, Kawano Y (2016) Nat Photon 10:809
62. Hartmann RR, Kono J, Portnoi ME (2014) Nanotechnology 25:322001
63. Wang R, Xie L, Hameed S, Wang C, Ying Y (2018) Carbon 132:42
64. Ulbricht R, Hendry E, Shan J, Heinz TF, Bonn M (2011) Rev Mod Phys 83:543
65. Lloyd-Hughes J, Jeon T-I (2012) J Infrared. Millim Terahertz Waves 33:871
66. Morimoto T et al (2014) ACS Nano 8:9897
67. Blackburn JL et al (2008) ACS Nano 2:1266
68. Mustonen K et al (2012) Beilstein J Nanotechnol 3:692
69. Bârsan OA, Hoffmann GG, van der Ven LGJ, de With G (2016) Adv Funct Mater 26:4377
70. Zhang C et al (2013) J Phys 15:055017
71. Nasibulin AG, Moisala A, Brown DP, Jiang H, Kauppinen EI (2005) Chem Phys Lett 402:227
72. Yang L, Anantram MP, Han J, Lu JP (1999) Phys Rev B 60:13874
73. Gyungseon S et al (2006) CNTbands
74. Chanthbouala A et al (2012) Nat Mater 11:860
75. Fusil S, Garcia V, Barthélémy A, Bibes M (2014) Ann Rev Mater Res 44:91
76. Beaurepaire E, Merle J-C, Daunois A, Bigot J-Y (1996) Phys Rev Lett 76:4250
77. Kirilyuk A, Kimel AV, Rasing T (2010) Rev Mod Phys 82:2731
78. Mochizuki M, Furukawa N, Nagaosa N (2010) Phys Rev Lett 104:177206
79. Kubacka T et al (2014) Science (New York, N.Y.) 343:1333
80. Kimura T, Sekio Y, Nakamura H, Siegrist T, Ramirez AP (2008) Nat Mater 7:291
81. Stein J et al (2015) J Phys: Condens Matter 27:446001
82. Kuz’menko AB et al (2001) Phys Rev B 63:094303
