Zobrazeno 1 - 10
of 250
pro vyhledávání: '"Tristán, H."'
Autor:
Beierlein, Johannes, Egorov, Oleg A., Gagel, Philipp, Harder, Tristan H., Wolf, Adriana, Emmerling, Monika, Betzold, Simon, Jabeen, Fauzia, Ma, Libo, Höfling, Sven, Peschel, Ulf, Klembt, Sebastian
One-dimensional models with topological non-trivial band structures are a simple and effective way to study novel and exciting concepts in topological photonics. In this work we are studying the propagation of light-matter quasi-particles, so called
Externí odkaz:
http://arxiv.org/abs/2402.13943
Autor:
Stoter, Stein K. F., van Sluijs, Tom B., Demont, Tristan H. B., van Brummelen, E. Harald, Verhoosel, Clemens V.
Binary-fluid flows can be modeled using the Navier-Stokes-Cahn-Hilliard equations, which represent the boundary between the fluid constituents by a diffuse interface. The diffuse-interface model allows for complex geometries and topological changes o
Externí odkaz:
http://arxiv.org/abs/2305.19237
Autor:
Shankel, Shelby L., Ma, Yuting, Spivey, Jesse A., Filien, Leila, Lambert, Tristan H., Fors, Brett P.
Publikováno v:
In European Polymer Journal 6 March 2024 207
Autor:
Beierlein, Johannes, Egorov, Oleg. A., Harder, Tristan H., Gagel, Philipp, Emmerling, Monika, Schneider, Christian, Höfling, Sven, Peschel, Ulf, Klembt, Sebastian
Bloch oscillations are a phenomenon well known from quantum mechanics where electrons in a lattice experience an oscillatory motion in the presence of an electric field gradient. Here, we report on Bloch oscillations of hybrid light-matter particles,
Externí odkaz:
http://arxiv.org/abs/2012.14281
Autor:
Dusel, Marco, Betzold, Simon, Harder, Tristan. H., Emmerling, Monika, Ohmer, Jürgen, Fischer, Utz, Thomale, Ronny, Schneider, Christian, Höfling, Sven, Klembt, Sebastian
Interacting bosonic particles in artificial lattices have proven to be a powerful tool for the investigation of exotic phases of matter as well as phenomena resulting from non-trivial topology. Exciton-polaritons, bosonic quasi-particles of light and
Externí odkaz:
http://arxiv.org/abs/2012.11945
Autor:
Harder, Tristan H., Egorov, Oleg A., Krause, Constantin, Beierlein, Johannes, Gagel, Philipp, Emmerling, Monika, Schneider, Christian, Peschel, Ulf, Höfling, Sven, Klembt, Sebastian
Publikováno v:
ACS Photonics 8, 11, 3193-3200 (2021)
Kagome lattices supporting Dirac cone and flatband dispersions are well known as a highly frustrated, two-dimensional lattice system. Particularly the flatbands therein are attracting continuous interest based on their link to topological order, corr
Externí odkaz:
http://arxiv.org/abs/2011.10766
Autor:
Harder, Tristan H., Sun, Meng, Egorov, Oleg A., Vakulchyk, Ihor, Beierlein, Johannes, Gagel, Philipp, Emmerling, Monika, Schneider, Christian, Peschel, Ulf, Savenko, Ivan G., Klembt, Sebastian, Höfling, Sven
Publikováno v:
ACS Photonics 8, 5, 1377-1384 (2021)
Topological concepts have been applied to a wide range of fields in order to successfully describe the emergence of robust edge modes that are unaffected by scattering or disorder. In photonics, indications of lasing from topologically protected mode
Externí odkaz:
http://arxiv.org/abs/2005.14546
Autor:
Abbott, Tristan H., Cronin, Timothy W.
Publikováno v:
Science 371 (2021) 83-85
Cloud-aerosol interactions remain a major obstacle to understanding climate and severe weather. Observations suggest that aerosols enhance tropical thunderstorm activity; past research, motivated by the importance of understanding aerosol impacts on
Externí odkaz:
http://arxiv.org/abs/2002.06056
Autor:
Harder, Tristan H., Egorov, Oleg A., Beierlein, Johannes, Gagel, Philipp, Michl, Johannes, Emmerling, Monika, Schneider, Christian, Peschel, Ulf, Höfling, Sven, Klembt, Sebastian
Publikováno v:
Phys. Rev. B 102, 121302 (2020)
In recent years, novel two-dimensional materials such as graphene, bismuthene and transition-metal dichalcogenides have attracted considerable interest due to their unique physical properties. A range of physical effects can be transferred to the rea
Externí odkaz:
http://arxiv.org/abs/2002.05405
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