Publications

Heinz Schweizer, Liwei Fu, Na Liu, Thomas Weiss, Philipp Schau, Karsten Frenner, Wolfgang Osten, and Harald Gießen. The promise of metamaterials for new applications in optics. In Bernd Bodermann (Eds.), Modeling aspects in optical metrology III, 8083:808302, SPIE, Bellingham, Wash., 2011. [PUMA: liste mult ubs_10007 ubs_10008 ubs_20011 ubs_20014 ubs_30114 ubs_30130 ubs_40175 ubs_40209 ubs_40211 unibibliografie]

Thomas Weiss, Nikolay A. Gippius, Gérard Granet, Sergei G. Tikhodeev, Richard Taubert, Liwei Fu, Heinz Schweizer, and Harald Gießen. Strong resonant mode coupling of Fabry-Perot and grating resonances in stacked two-layer systems. In Dmitry N. Chigrin (Eds.), TaCoNa-Photonics 2010, 9, 4:390-397, Elsevier, Amsterdam, 2011. [PUMA: liste mult ubs_10007 ubs_10008 ubs_20011 ubs_20014 ubs_30114 ubs_30130 ubs_40175 ubs_40209 ubs_40211 unibibliografie]

Ling Xin, Mo Lu, Steffen Both, Markus Pfeiffer, Maximilian J. Urban, Chao Zhou, Hao Yan, Thomas Weiss, Na Liu, and Klas Lindfors. Watching a Single Fluorophore Molecule Walk into a Plasmonic Hotspot. ACS Photonics, (6)4:985-993, ACS, 2019. [PUMA: mult ubs_10008 ubs_10021 ubs_20014 ubs_20018 ubs_30130 ubs_30161 ubs_40209 ubs_40211 unibibliografie wos]

Bettina Frank, Philip Kahl, Daniel Podbiel, Grisha Spektor, Meir Orenstein, Liwei Fu, Thomas Weiss, Michael Horn-von Hoegen, Timothy J. Davis, Frank-J. Meyer zu Heringdorf, and Harald Gießen. Short-range surface plasmonics : Localized electron emission dynamics from a 60-nm spot on an atomically flat single-crystalline gold surface. Science advances, (3)7:e1700721, AAAS, 2017. [PUMA: f2017 mult oa sfonds ubs_10007 ubs_10008 ubs_20011 ubs_20014 ubs_30114 ubs_30130 ubs_40175 ubs_40209 ubs_40211 uni unibibliografie wos]

Christian Kramer, Martin Schäferling, Thomas Weiss, Harald Gießen, and Tobias Brixner. Analytic Optimization of Near-Field Optical Chirality Enhancement. ACS photonics, (4)2:396-406, American Chemical Society, 2017. [PUMA: mult ubs_10008 ubs_20014 ubs_30130 ubs_40209 ubs_40211 unibibliografie wos]

Ksenia Weber, Maxim L. Nesterov, Thomas Weiss, Michael Scherer, Mario Hentschel, Jochen Vogt, Christian Huck, Weiwu Li, Martin Dressel, Harald Gießen, and Frank Neubrech. Wavelength Scaling in Antenna-Enhanced Infrared Spectroscopy: Toward the Far-IR and THz Region. ACS photonics, (4)1:45-51, American Chemical Society, 2017. [PUMA: mult ubs_10008 ubs_20014 ubs_30127 ubs_30130 ubs_40209 ubs_40211 ubs_40326 unibibliografie wos]

Maxim L. Nesterov, Xinghui Yin, Martin Schäferling, Harald Gießen, and Thomas Weiss. The Role of Plasmon-Generated Near Fields for Enhanced Circular Dichroism Spectroscopy. ACS photonics, (3)4:578-583, American Chemical Society, 2016. [PUMA: mult ubs_10008 ubs_20014 ubs_30130 ubs_40209 ubs_40211 unibibliografie wos]

Martin Schäferling, Nader Engheta, Harald Gießen, and Thomas Weiss. Reducing the Complexity: Enantioselective Chiral Near-Fields by Diagonal Slit and Mirror Configuration. ACS photonics, (3)6:1076-1084, American Chemical Society, 2016. [PUMA: mult ubs_10008 ubs_20014 ubs_30130 ubs_40209 ubs_40211 unibibliografie wos]

A. A. Demenev, V. D. Kulakovskii, C. Schneider, S. Brodbeck, M. Kamp, S. Höfling, S. V. Lobanov, Thomas Weiss, N. A. Gippius, and S. G. Tikhodeev. Circularly polarized lasing in chiral modulated semiconductor microcavity with GaAs quantum wells. Applied physics letters, (109)17:171106, AIP, 2016. [PUMA: mult ubs_10008 ubs_10012 ubs_20014 ubs_20018 ubs_30130 ubs_30161 ubs_40211 unibibliografie wos]

Dominik Floess, Mario Hentschel, Thomas Weiss, Hanns-Ulrich Habermeier, Jian Jiao, Sergei G. Tikhodeev, and Harald Giessen. Plasmonic Analog of Electromagnetically Induced Absorption Leads to Giant Thin Film Faraday Rotation of 14 degrees. Physical review. X, Expanding access, (7)2:021048, American Physical Society, 2017. [PUMA: f2017 mult oa sfonds ubs_10008 ubs_20014 ubs_30130 ubs_40209 ubs_40211 uni unibibliografie wos]

Thomas Weiss, Martin Mesch, Martin Schäferling, Harald Gießen, W. Langbein, and E. A. Muljarov. From Dark to Bright: First-Order Perturbation Theory with Analytical Mode Normalization for Plasmonic Nanoantenna Arrays Applied to Refractive Index Sensing. Physical review letters, (116)23:237401, American Physical Society, 2016. [PUMA: mult ubs_10008 ubs_20014 ubs_30130 ubs_40209 ubs_40211 unibibliografie wos]

Thomas Weiss, M. Schaeferling, Harald Gießen, N. A. Gippius, S. G. Tikhodeev, W. Langbein, and E. A. Muljarov. Analytical normalization of resonant states in photonic crystal slabs and periodic arrays of nanoantennas at oblique incidence. Physical review. B, Condensed matter and materials physics, (96)4:045129, American Physical Society, 2017. [PUMA: mult ubs_10008 ubs_20014 ubs_30130 ubs_40209 ubs_40211 unibibliografie wos]

Dominik Flöß, Thomas Weiss, Sergei Tikhodeev, and Harald Gießen. Lorentz Nonreciprocal Model for Hybrid Magnetoplasmonics. Physical review letters, (117)6:063901, American Physical Society, 2016. [PUMA: mult ubs_10008 ubs_20014 ubs_30130 ubs_40209 ubs_40211 unibibliografie wos]

Martin Mesch, Thomas Weiss, Martin Schäferling, Mario Hentschel, Ravi S. Hedge, and Harald Gießen. Highly sensitive refractive index sensors with plasmonics nanoantennas-utilization of optical spectral detuning of Fano resonances. ACS sensors, (3)5:960-966, ACS, 2018. [PUMA: liste mult ubs_10008 ubs_20014 ubs_30130 ubs_40209 ubs_40211 unibibliografie]

Maxim Nesterov, Martin Schäferling, Ksenia Weber, Frank Neubrech, Harald Gießen, and Thomas Weiss. Line-current model for deriving the wavelength scaling of linear and nonlinear optical properties of thin elongated metallic rod antennas. Journal of the Optical Society of America. B, Optical physics, (35)7:1482-1489, Optical Society of America, 2018. [PUMA: liste mult ubs_10008 ubs_20014 ubs_30130 ubs_40209 ubs_40211 unibibliografie]

Egor A. Muljarov, and Thomas Weiss. Resonant-state expansion for open optical systems: generalization to magnetic, chiral, and bi-anisotropic materials. Optics letters, (43)9:1978-1981, Optical Society of America, 2018. [PUMA: liste oa ubs_10008 ubs_20014 ubs_30130 ubs_40211 unibibliografie]

Julia Braun, Bruno Gompf, Thomas Weiss, Harald Gießen, and Martin Dressel. Transmission through subwavelength hole arrays in ultrathin metal films. Physical review. B, Condensed matter and materials physics, (84)15:155419; 1-6, APS, 2011. [PUMA: liste mult ubs_10008 ubs_20014 ubs_30127 ubs_30130 ubs_40211 ubs_40326 unibibliografie]

Mario Hentschel, Martin Schäferling, Thomas Weiss, Na Liu, and Harald Gießen. Three-dimensional chiral plasmonic oligomers. Nano letters, (12)5:2542-2547, ACS, 2012. [PUMA: liste mult ubs_10008 ubs_20014 ubs_30130 ubs_40209 ubs_40211 unibibliografie]

Na Liu, Mario Hentschel, Thomas Weiss, Armand Paul Alivisatos, and Harald Gießen. Three-dimensional plasmon rulers. Science, (332)6036:1407-1410, AAAS, 2011. [PUMA: liste mult ubs_10008 ubs_20014 ubs_30130 ubs_40209 ubs_40211 unibibliografie]

Jessie Yao Chin, Tobias Steinle, Thomas Wehlus, Daniel Dregely, Thomas Weiss, Vladimir I. Belotelov, Bernd Stritzker, and Harald Gießen. Nonreciprocal plasmonics enables giant enhancement of thin film Faraday rotation. Nature communications, (4):1599; 1-6, Nature Publishing Group, 2013. [PUMA: liste oa ubs_10008 ubs_20014 ubs_30130 ubs_40209 ubs_40211 unibibliografie]

Na Liu, Martin Mesch, Thomas Weiss, Mario Hentschel, and Harald Gießen. Infrared perfect absorber and its application as plasmonic sensor. Nano letters, (10)7:2342-2348, ACS, 2010. [PUMA: liste mult ubs_10008 ubs_20014 ubs_30130 ubs_40209 ubs_40211 unibibliografie]

Richard Taubert, Ralf Ameling, Thomas Weiss, André Christ, and Harald Gießen. From near-field to far-field coupling in the third dimension : retarded interaction of particle plasmons. Nano letters, (11)10:4421-4421, ACS, 2011. [PUMA: liste mult ubs_10008 ubs_20014 ubs_30130 ubs_40209 ubs_40211 unibibliografie]

Liwei Fu, Philipp Schau, Karsten Frenner, Wolfgang Osten, Thomas Weiss, Heinz Schweizer, and Harald Gießen. Mode coupling and interaction in a plasmonic microcavity with resonant mirrors. Physical review. B, Condensed matter and materials physics, (84)23:235402; 1-6, APS, 2011. [PUMA: liste mult ubs_10007 ubs_10008 ubs_20011 ubs_20014 ubs_30114 ubs_30130 ubs_40175 ubs_40209 ubs_40211 unibibliografie]

Na Liu, Thomas Weiss, Martin Mesch, Lutz Langguth, Ulrike Eigenthaler, Michael Hirscher, Carsten Sönnichsen, and Harald Gießen. Planar metamaterial analog of electromagnetically induced transparency for plasmonic sensing. Nano letters, (10)4:1103-1107, ACS, 2010. [PUMA: liste mult ubs_10008 ubs_20014 ubs_30130 ubs_40209 ubs_40211 unibibliografie]

Bruno Gompf, Julia Braun, Thomas Weiss, Harald Gießen, Uwe Hübner, and Martin Dressel. Periodic nanostructures : spatial dispersion mimics chirality. Physical review letters, (106)18:185501; 1-4, APS, 2011. [PUMA: liste mult ubs_10008 ubs_20014 ubs_30127 ubs_30130 ubs_40211 ubs_40326 unibibliografie]

Audrey Berrier, Bruno Gompf, Liwei Fu, Thomas Weiss, and Heinz Schweizer. Optical anisotropies of single-meander plasmonic metasurfaces analyzed by Mueller matrix spectroscopy. Physical review. B, Condensed matter and materials physics, (89)19:195434; 1-7, APS, 2014. [PUMA: liste mult ubs_10007 ubs_10008 ubs_20011 ubs_20014 ubs_30114 ubs_30127 ubs_30130 ubs_40175 ubs_40209 ubs_40211 ubs_40326 unibibliografie]

Nikolay A. Gippius, Thomas Weiss, Sergei G. Tikhodeev, and Harald Gießen. Resonant mode coupling of optical resonances in stacked nanostructures. Optics express, (18)7:7569-7574, Optical Society of America, 2010. [PUMA: liste mult oa ubs_10008 ubs_20014 ubs_30130 ubs_40209 ubs_40211 unibibliografie]

Mario Hentschel, Thomas Weiss, Shahin Bagheri, and Harald Gießen. Babinet to the half: coupling of solid and inverse plasmonic structures. Nano letters, (13)9:4428-4433, ACS, 2013. [PUMA: liste mult ubs_10008 ubs_20014 ubs_30130 ubs_40209 ubs_40211 unibibliografie]

Sergey V. Lobanov, Thomas Weiss, Daniel Dregely, Harald Gießen, Nikolay A. Gippius, and Sergei G. Tikhodeev. Emission properties of an oscillating point dipole from a gold Yagi-Uda nanoantenna array. Physical review. B, Condensed matter and materials physics, (85)15:155137; 1-6, APS, 2012. [PUMA: liste mult ubs_10008 ubs_20014 ubs_30130 ubs_40209 ubs_40211 unibibliografie]

Florian Gebert, Michael H. Frosz, Thomas Weiss, Y. Wan, Alexey Ermolov, Nicolas Y. Joly, Piet Oliver Schmidt, and Philip St. John Russell. Damage-free single-mode transmission of deep-UV light in hollow-core PCF. Optics express, (22)13:15388-15396, Optical Society of America, 2014. [PUMA: liste oa ubs_10008 ubs_20014 ubs_30130 ubs_40211 unibibliografie]

Thomas Weiss, Nikolay A. Gippius, Sergei G. Tikhodeev, Gérard Granet, and Harald Gießen. Acceleration of parameter studies in the Fourier modal method by introducing lateral shift matrices. Journal of computational and theoretical nanoscience, (8)8:1625-1630, American Scientific Publ., 2011. [PUMA: liste mult ubs_10008 ubs_20014 ubs_30130 ubs_40209 ubs_40211 unibibliografie]

Martin A. Finger, Nicolas Y. Joly, Thomas Weiss, and Philip St. John Russell. Accuracy of the capillary approximation for gas-filled kagomé-style photonic crystal fibers. Optics letters, (39)4:821-824, Optical Society of America, 2014. [PUMA: liste oa ubs_10008 ubs_20014 ubs_30130 ubs_40211 unibibliografie]

Thomas Weiss, Nikolay A. Gippius, Sergei G. Tikhodeev, Gérard Granet, and Harald Gießen. Derivation of plasmonic resonances in the Fourier modal method with adaptive spatial resolution and matched coordinates. Journal of the Optical Society of America. A, Optics, image science, and vision, (28)2:238-244, Optical Society of America, 2011. [PUMA: liste mult ubs_10008 ubs_20014 ubs_30130 ubs_40209 ubs_40211 unibibliografie]

Thomas Weiss, Gérard Granet, Nikolay A. Gippius, Sergei G. Tikhodeev, and Harald Gießen. Matched coordinates and adaptive spatial resolution in the Fourier modal method. Optics express, (17)10:8051-8061, Optical Society of America, 2009. [PUMA: liste mult oa ubs_10008 ubs_20014 ubs_30130 ubs_40209 ubs_40211 unibibliografie]

Thomas Weiss, Nikolay A. Gippius, Sergei G. Tikhodeev, Gérard Granet, and Harald Gießen. Efficient calculation of the optical properties of stacked metamaterials with a Fourier modal method. Journal of optics. A, Pure and applied optics, (11)11:114019; 1-6, IOP, 2009. [PUMA: liste mult ubs_10008 ubs_20014 ubs_30130 ubs_40209 ubs_40211 unibibliografie]

Liwei Fu, Heinz Schweizer, Thomas Weiss, and Harald Gießen. Optical properties of metallic meanders. Journal of the Optical Society of America. B, Optical physics, (26)12:B111-B119, Optical Society of America, 2009. [PUMA: liste mult ubs_10007 ubs_10008 ubs_20011 ubs_20014 ubs_30114 ubs_30130 ubs_40175 ubs_40209 ubs_40211 unibibliografie]

Na Liu, Lutz Langguth, Thomas Weiss, Jürgen Kästel, Michael Fleischhauer, Tilman Pfau, and Harald Gießen. Plasmonic analogue of electromagnetically induced transparency at the Drude damping limit. Nature materials, (8):758-762, Nature Publishing Group, 2009. [PUMA: liste mult ubs_10008 ubs_20014 ubs_30130 ubs_30131 ubs_40209 ubs_40211 ubs_40319 unibibliografie]

Marcus Matuschek, Dhruv Pratap Singh, Jeong Hyeon-Ho, Maxim Nesterov, Thomas Weiss, Peer Fischer, Frank Neubrech, and Na Liu. Chiral plasmonic hydrogen sensors. Small : nano micro, (14)7:1702990; 1-7, Wiley-VCH, 2018. [PUMA: liste mult ubs_10003 ubs_10008 ubs_20003 ubs_20014 ubs_30035 ubs_30130 ubs_40060 ubs_40211 unibibliografie]

Heinz Schweizer, Liwei Fu, Mario Hentschel, Thomas Weiss, C. Bauer, Philipp Schau, Karsten Frenner, Wolfgang Osten, and Harald Gießen. Resonant multimeander-metasurfaces : a model system for superlenses and communication devices. Physica status solidi. B, Basic research, (249)7:1415-1421, Wiley-VCH, 2011. [PUMA: liste mult ubs_10007 ubs_10008 ubs_20011 ubs_20014 ubs_30114 ubs_30130 ubs_40175 ubs_40209 ubs_40211 unibibliografie]

T. Weiss, and E. A. Muljarov. How to Calculate the Pole Expansion of the Optical Scattering Matrix from the Resonant States. Physical Review. B, (98)8:085433, American Physical Society, 2018. [PUMA: ubs_10008 ubs_20014 ubs_30130 ubs_40211 unibibliografie wos]

Ruizhe Zhao, Basudeb Sain, Qunshuo Wei, Chengchun Tang, Xiaowei Li, Thomas Weiss, Lingling Huang, Yongtian Wang, and Thomas Zentgraf. Multichannel vectorial holographic display and encryption. Light : Science & Applications, (7):95, Nature Research, 2018. [PUMA: oa ubs_10008 ubs_20014 ubs_30130 ubs_40211 unibibliografie wos]

Raul D. Rodriguez, Evgeniya Sheremet, Maxim Nesterov, Stefan Moras, Mahfujur Rahaman, Thomas Weiss, Michael Hietschold, and Dietrich R. T. Zahn. Aluminum and copper nanostructures for surface-enhanced Raman spectroscopy : A one-to-one comparison to silver and gold. Sensors and Actuators. B : Chemical, (262):922-927, Elsevier, 2018. [PUMA: ubs_10008 ubs_20014 ubs_30130 ubs_40211 unibibliografie wos]

Maximilian J. Urban, Steffen Both, Chao Zhou, Anton Kuzyk, Klas Lindfors, Thomas Weiss, and Na Liu. Gold Nanocrystal-Mediated Sliding of Doublet DNA Origami Filaments. Nature Communications, (9):1454, Springer Nature, 2018. [PUMA: mult oa ubs_10008 ubs_20014 ubs_30130 ubs_40209 ubs_40211 unibibliografie wos]

M. L. Nesterov, M. Schaeferling, Ksenia Weber, F. Neubrech, Harald Giessen, and Thomas Weiss. Line-current model for deriving the wavelength scaling of linear and nonlinear optical properties of thin elongated metallic rod antennas. Journal of the Optical Society of America. B, (35)7:1482-1489, OSA Publishing, 2018. [PUMA: mult ubs_10008 ubs_20014 ubs_30130 ubs_40209 ubs_40211 unibibliografie wos]

M. S. Komlenok, Sergei Tikhodeev, Thomas Weiss, S. P. Lebedev, Gennady Komandin, and V. I. Konov. All-carbon diamond/graphite metasurface : Experiment and modeling. Applied Physics Letters, (113)4:041101, AIP Publishing, 2018. [PUMA: ubs_10008 ubs_20014 ubs_30130 ubs_40211 unibibliografie wos]

Izzatjon Allayarov, Hajeeb Swaathi Upendar, M. A. Schmidt, and Thomas Weiss. Analytic Mode Normalization for the Kerr Nonlinearity Parameter : Prediction of Nonlinear Gain for Leaky Modes. Physical Review Letters, (121)21:213905, American Physical Society, 2018. [PUMA: mult ubs_10008 ubs_20014 ubs_30130 ubs_40209 ubs_40211 unibibliografie wos]