Tobias Wimmer

Patent Attorney Candidate

Dr Tobias Wimmer has been a patent attorney candidate at df-mp since 2021. With his scientific knowledge, he complements our expertise in the fields of physics, mechanics and electrical engineering. His main focus is on assisting with European and German patent application proceedings, opposition proceedings and patent litigation, as well as preparing patent infringement and validity opinions.

+ 49 89 210 296 0
tobias.wimmer@df-mp.com

Tobias Wimmer

Patent Attorney Candidate

Dr Tobias Wimmer has been a patent attorney candidate at df-mp since 2021. With his scientific knowledge, he complements our expertise in the fields of physics, mechanics and electrical engineering. His main focus is on assisting with European and German patent application proceedings, opposition proceedings and patent litigation, as well as preparing patent infringement and validity opinions.

+ 49 89 210 296 0
tobias.wimmer@df-mp.com

practice areas.

references and activities.

Author and co-author of numerous scientific publications in the field of solid state physics, in particular magnetism and spin electronics.

curriculum vitae.

Since 2021
Since 2021

Patent att­or­ney can­di­da­te at df-mp

2017-2021
2017-2021

Doc­to­ra­te at the Walt­her Meiss­ner Insti­tu­te for Low Tem­pe­ra­tu­re Rese­arch and the Tech­ni­cal Uni­ver­si­ty of Munich, dis­ser­ta­ti­on with the topic: “Con­trol and Mani­pu­la­ti­on of Magno­nic Spin Curr­ents in Magne­tic Insu­la­tors”.

2011-2016
2011-2016

Bachelor’s degree in phy­sics and Master’s degree in con­den­sed mat­ter phy­sics at the Tech­ni­cal Uni­ver­si­ty of Munich, M. Sc. the­sis on spin trans­port in magne­tic insu­la­tors

publications.

  • J. Gückelhorn, T. Wimmer, M. Müller, S. Geprägs, H. Huebl, R. Gross, M. Althammer, Magnon transport in YIG/Pt nanostructures with reduced effective magnetization, Phys. Rev. B 104, L180410 (2021)
  • T. Wimmer, J. Gückelhorn, S. Wimmer, S. Mankovsky, H. Ebert, M. Opel, S. Geprägs, R. Gross, H. Huebl, M. Althammer, Low Temperature Suppression of the Spin Nernst Angle in Pt, Phys. Rev. B 104, L140404 (2021).
  • T. Wimmer, A. Kamra, J. Gückelhorn, M. Opel, S. Geprägs, R. Gross, H. Huebl, M. Althammer, Observation of Antiferromagnetic Magnon Pseudospin Dynamics and the Hanle Effect, Physical Review Letters 125, 247204 (2020).
  • A. Kamra, T. Wimmer, H. Huebl, M. Althammer, Antiferromagnetic magnon pseudospin: Dynamics and diffusive transport, Physical Review B 102, 174445 (2020).
  • J. Gückelhorn, T. Wimmer, S. Geprägs, H. Huebl, R. Gross, M. Althammer, Quantitative comparison of magnon transport experiments in three-terminal YIG/Pt nanostructures acquired via dc and ac detection techniques, Applied Physics Letters 117, 182401 (2020).
  • T. Wimmer, M. Althammer, L. Liensberger, N. Vlietstra, S. Geprägs, M. Weiler, R. Gross, H. Huebl, Spin Transport in a Magnetic Insulator with Zero Effective Damping, Physical Review Letters 123, 257201 (2019).
  • M. Althammer, A.V. Singh, T. Wimmer, Z. Galazka, H. Huebl, M. Opel, R. Gross, A. Gupta, Role of interface quality for the spin Hall magnetoresistance in nickel ferrite thin films with bulk-like magnetic properties, Applied Physics Letters 115, 092403 (2019).
  • T. Wimmer, B. Coester, S. Geprägs, R. Gross, S.T.B. Goennenwein, H. Huebl, M. Althammer, Anomalous spin Hall angle of a metallic ferromagnet determined by a multiterminal spin injection/detection device, Applied Physics Letters 115, 092404 (2019).
  • K. Ganzhorn, T. Wimmer, J. Cramer, R. Schlitz, S. Geprägs, G. Jakob, R. Gross, H. Huebl, M. Kläui, S.T.B. Goennenwein, Temperature dependence of the non-local spin Seebeck effect in YIG/Pt nanostructures, AIP Advances 7, 085102 (2017).
  • K. Ganzhorn, S. Klingler, T. Wimmer, S. Geprägs, R. Gross, H. Huebl, S.T.B. Goennenwein, Magnon-based logic in a multi-terminal YIG/Pt nanostructure, Applied Physics Letters 109, 022405 (2016).