184
5 Optical Measurement Techniques
140. A. Rustagi, A.F. Kemper, Photoemission signature of excitons. Phys. Rev. B 97, 235310
(2018)
141. H. Yu, G.-B. Liu, P. Gong, X. Xu, W. Yao, Dirac cones and dirac saddle points of bright
excitons in monolayer transition metal dichalcogenides. Nat. Commun. 5, 3876 (2014)
142. F. Wu, F. Qu, A.H. MacDonald, Exciton band structure of monolayer MoS 2 . Phys. Rev. B 91,
075310 (2015)
143. D.Y. Qiu, T. Cao, S.G. Louie, Nonanalyticity, valley quantum phases, and lightlike exciton
dispersion in monolayer transition metal dichalcogenides: Theory and first-principles calculations. Phys. Rev. Lett. 115, 176801 (2015)
144. M.M. Glazov, T. Amand, X. Marie, D. Lagarde, L. Bouet, B. Urbaszek, Exciton fine structure
and spin decoherence in monolayers of transition metal dichalcogenides. Phys. Rev. B 89,
201302 (2014)
145. T. Deilmann, K.S. Thygesen, Finite-momentum exciton landscape in mono- and bilayer transition metal dichalcogenides. 2D Mater. 6, p. 035003 (2019)
146. A.E. Siegman, How to (maybe) measure laser beam quality, in DPSS (Diode Pumped Solid
State) Lasers: Applications and Issues (Optical Society of America, 1998), p. MQ1
147. ISO 11146, Lasers and laser-related equipment – test methods for laser beam parameters –
beam width, divergence, angle and beam propagation factor (1999)
148. C. Möller, F. Zhang, C. Fuchs, C. Berger, A. Rehn, A.R. Perez, A. Rahimi-Iman, J. Hader,
M. Koch, J.V. Moloney, S.W. Koch, W. Stolz, Fundamental transverse mode operation of a
type-II vertical-external-cavity surface-emitting laser at 1.2 μm. Electron. Lett. 53, 93–94
(2017)
149. H. Richter, N. Rothbart, H.-W. Hübers, Characterizing the beam properties of terahertz
quantum-cascade lasers. J. Infrared Milli. Terahz Waves 35, 686–698 (2014)
150. Y. Song, H. Dery, Transport theory of monolayer transition-metal dichalcogenides through
symmetry. Phys. Rev. Lett. 111, 026601 (2013)
151. H. Dery, Y. Song, Polarization analysis of excitons in monolayer and bilayer transition-metal
dichalcogenides. Phys. Rev. B 92, 125431 (2015)
152. C. Robert, T. Amand, F. Cadiz, D. Lagarde, E. Courtade, M. Manca, T. Taniguchi, K. Watanabe, B. Urbaszek, X. Marie, Fine structure and lifetime of dark excitons in transition metal
dichalcogenide monolayers. Phys. Rev. B 96, 755423 (2017)
153. J. Kasprzak, M. Richard, S. Kundermann, A. Baas, P. Jeambrun, J.M.J. Keeling, F.M.
Marchetti, M.H. Szyma´ nska, R. André, J.L. Staehli, V. Savona, P.B. Littlewood, B. Deveaud,
L.S. Dang, Bose-Einstein condensation of exciton polaritons. Nature 443, 409–414 (2006)
154. A. Rahimi-Iman, On the Condensation of Polaritons. Springer Series in Optical Sciences,
vol. 229 (Springer International Publishing, Cham, 2020), pp. 65–85
155. P. Jepsen, D. Cooke, M. Koch, Terahertz spectroscopy and imaging - Modern techniques and
applications. Laser Photon. Rev. 5, 124–166 (2011)
156. M. Stein, C. Lammers, P.-H. Richter, C. Fuchs, W. Stolz, M. Koch, O. Vänskä, M.J. Weseloh,
M. Kira, S.W. Koch, Dynamics of charge-transfer excitons in type-II semiconductor heterostructures. Phys. Rev. B 97, 125306 (2018)
157. A. Soltani, D. Gebauer, L. Duschek, B.M. Fischer, H. Cölfen, M. Koch, Crystallization caught
in the act with terahertz spectroscopy: non-classical pathway for l-(+)-tartaric acid. Chem. -
A Eur. J. 23, 14128–14132 (2017)
158. W. Lai, N. Born, L.M. Schneider, A. Rahimi-Iman, J.C. Balzer, M. Koch, Broadband antireflection coating for optimized terahertz beam splitters. Opt. Mater. Express 5, 2812–2819
(2015)
159. E. Stübling, Y. Bauckhage, E. Jelli, B. Fischer, B. Globisch, M. Schell, A. Heinrich, J. Balzer,
M. Koch, A THz Tomography System for Arbitrarily Shaped Samples. J. Infrared Milli.
Terahz Waves 38, 1179–1182 (2017)
160. M.D. Thomson, W. Zouaghi, F. Meng, M.M. Wiecha, K. Rabia, T. Heinlein, L. Hussein, D.
Babu, S. Yadav, J. Engstler, J.J. Schneider, N. Nicoloso, I. Rychetský, P. Kužel, H.G. Roskos,
Dielectric properties of vertically aligned multi-walled carbon nanotubes in the terahertz and
mid-infrared range. J. Phys. D: Appl. Phys. 51, 034004 (2017)
5 Optical Measurement Techniques
140. A. Rustagi, A.F. Kemper, Photoemission signature of excitons. Phys. Rev. B 97, 235310
(2018)
141. H. Yu, G.-B. Liu, P. Gong, X. Xu, W. Yao, Dirac cones and dirac saddle points of bright
excitons in monolayer transition metal dichalcogenides. Nat. Commun. 5, 3876 (2014)
142. F. Wu, F. Qu, A.H. MacDonald, Exciton band structure of monolayer MoS 2 . Phys. Rev. B 91,
075310 (2015)
143. D.Y. Qiu, T. Cao, S.G. Louie, Nonanalyticity, valley quantum phases, and lightlike exciton
dispersion in monolayer transition metal dichalcogenides: Theory and first-principles calculations. Phys. Rev. Lett. 115, 176801 (2015)
144. M.M. Glazov, T. Amand, X. Marie, D. Lagarde, L. Bouet, B. Urbaszek, Exciton fine structure
and spin decoherence in monolayers of transition metal dichalcogenides. Phys. Rev. B 89,
201302 (2014)
145. T. Deilmann, K.S. Thygesen, Finite-momentum exciton landscape in mono- and bilayer transition metal dichalcogenides. 2D Mater. 6, p. 035003 (2019)
146. A.E. Siegman, How to (maybe) measure laser beam quality, in DPSS (Diode Pumped Solid
State) Lasers: Applications and Issues (Optical Society of America, 1998), p. MQ1
147. ISO 11146, Lasers and laser-related equipment – test methods for laser beam parameters –
beam width, divergence, angle and beam propagation factor (1999)
148. C. Möller, F. Zhang, C. Fuchs, C. Berger, A. Rehn, A.R. Perez, A. Rahimi-Iman, J. Hader,
M. Koch, J.V. Moloney, S.W. Koch, W. Stolz, Fundamental transverse mode operation of a
type-II vertical-external-cavity surface-emitting laser at 1.2 μm. Electron. Lett. 53, 93–94
(2017)
149. H. Richter, N. Rothbart, H.-W. Hübers, Characterizing the beam properties of terahertz
quantum-cascade lasers. J. Infrared Milli. Terahz Waves 35, 686–698 (2014)
150. Y. Song, H. Dery, Transport theory of monolayer transition-metal dichalcogenides through
symmetry. Phys. Rev. Lett. 111, 026601 (2013)
151. H. Dery, Y. Song, Polarization analysis of excitons in monolayer and bilayer transition-metal
dichalcogenides. Phys. Rev. B 92, 125431 (2015)
152. C. Robert, T. Amand, F. Cadiz, D. Lagarde, E. Courtade, M. Manca, T. Taniguchi, K. Watanabe, B. Urbaszek, X. Marie, Fine structure and lifetime of dark excitons in transition metal
dichalcogenide monolayers. Phys. Rev. B 96, 755423 (2017)
153. J. Kasprzak, M. Richard, S. Kundermann, A. Baas, P. Jeambrun, J.M.J. Keeling, F.M.
Marchetti, M.H. Szyma´ nska, R. André, J.L. Staehli, V. Savona, P.B. Littlewood, B. Deveaud,
L.S. Dang, Bose-Einstein condensation of exciton polaritons. Nature 443, 409–414 (2006)
154. A. Rahimi-Iman, On the Condensation of Polaritons. Springer Series in Optical Sciences,
vol. 229 (Springer International Publishing, Cham, 2020), pp. 65–85
155. P. Jepsen, D. Cooke, M. Koch, Terahertz spectroscopy and imaging - Modern techniques and
applications. Laser Photon. Rev. 5, 124–166 (2011)
156. M. Stein, C. Lammers, P.-H. Richter, C. Fuchs, W. Stolz, M. Koch, O. Vänskä, M.J. Weseloh,
M. Kira, S.W. Koch, Dynamics of charge-transfer excitons in type-II semiconductor heterostructures. Phys. Rev. B 97, 125306 (2018)
157. A. Soltani, D. Gebauer, L. Duschek, B.M. Fischer, H. Cölfen, M. Koch, Crystallization caught
in the act with terahertz spectroscopy: non-classical pathway for l-(+)-tartaric acid. Chem. -
A Eur. J. 23, 14128–14132 (2017)
158. W. Lai, N. Born, L.M. Schneider, A. Rahimi-Iman, J.C. Balzer, M. Koch, Broadband antireflection coating for optimized terahertz beam splitters. Opt. Mater. Express 5, 2812–2819
(2015)
159. E. Stübling, Y. Bauckhage, E. Jelli, B. Fischer, B. Globisch, M. Schell, A. Heinrich, J. Balzer,
M. Koch, A THz Tomography System for Arbitrarily Shaped Samples. J. Infrared Milli.
Terahz Waves 38, 1179–1182 (2017)
160. M.D. Thomson, W. Zouaghi, F. Meng, M.M. Wiecha, K. Rabia, T. Heinlein, L. Hussein, D.
Babu, S. Yadav, J. Engstler, J.J. Schneider, N. Nicoloso, I. Rychetský, P. Kužel, H.G. Roskos,
Dielectric properties of vertically aligned multi-walled carbon nanotubes in the terahertz and
mid-infrared range. J. Phys. D: Appl. Phys. 51, 034004 (2017)