Thomas Brächer

About Thomas Brächer

Thomas Brächer, With an exceptional h-index of 31 and a recent h-index of 26 (since 2020), a distinguished researcher at Technische Universität Kaiserslautern, specializes in the field of Spin waves, magnetization dynamics, parametric amplification, spin orbit torques.

His recent articles reflect a diverse array of research interests and contributions to the field:

Experimental Realization of a Passive Gigahertz Frequency‐Division Demultiplexer for Magnonic Logic Networks

A magnonic directional coupler for integrated magnonic half-adders

Propagating magnetic droplet solitons as moveable nanoscale spin-wave sources with tunable direction of emission

Slow-Wave-Based Nanomagnonic Diode

Temperature dependence of spin pinning and spin-wave dispersion in nanoscopic ferromagnetic waveguides

Heisenberg Exchange and Dzyaloshinskii-Moriya Interaction in Ultrathin CoFeB Single and Multilayers

Propagation of Spin-Wave Packets in Individual Nanosized Yttrium Iron Garnet Magnonic Conduits

Bose–Einstein condensation of quasiparticles by rapid cooling

Thomas Brächer Information

University

Position

AG Magnetismus

Citations(all)

2995

Citations(since 2020)

2095

Cited By

1826

hIndex(all)

31

hIndex(since 2020)

26

i10Index(all)

44

i10Index(since 2020)

40

Email

University Profile Page

Technische Universität Kaiserslautern

Google Scholar

View Google Scholar Profile

Thomas Brächer Skills & Research Interests

Spin waves

magnetization dynamics

parametric amplification

spin orbit torques

Top articles of Thomas Brächer

Title

Journal

Author(s)

Publication Date

Experimental Realization of a Passive Gigahertz Frequency‐Division Demultiplexer for Magnonic Logic Networks

Physica Status Solidi RRL

F. Heussner

G. Talmelli

M. Geilen

B. Heinz

T. Brächer

...

2020

A magnonic directional coupler for integrated magnonic half-adders

Nature Electronics

Qi Wang

M Kewenig

M Schneider

Roman Verba

F Kohl

...

2020/12

Propagating magnetic droplet solitons as moveable nanoscale spin-wave sources with tunable direction of emission

Physical Review Applied

Morteza Mohseni

Qi Wang

Majid Mohseni

Thomas Brächer

Burkard Hillebrands

...

2020/2/14

Slow-Wave-Based Nanomagnonic Diode

Physical Review Applied

Matías Grassi

Moritz Geilen

Damien Louis

Morteza Mohseni

Thomas Brächer

...

2020/8/18

Temperature dependence of spin pinning and spin-wave dispersion in nanoscopic ferromagnetic waveguides

arXiv preprint arXiv:2002.00003

Björn Heinz

Qi Wang

Roman Verba

Vitaliy I Vasyuchka

Martin Kewenig

...

2020/1/31

Heisenberg Exchange and Dzyaloshinskii-Moriya Interaction in Ultrathin CoFeB Single and Multilayers

arXiv preprint arXiv:2006.02690

Tobias Böttcher

Kyujoon Lee

Frank Heussner

Samridh Jaiswal

Gerhard Jakob

...

2020/6/4

Propagation of Spin-Wave Packets in Individual Nanosized Yttrium Iron Garnet Magnonic Conduits

Nano letters

Björn Heinz

Thomas Brächer

Michael Schneider

Qi Wang

Bert Lägel

...

2020/4/24

Bose–Einstein condensation of quasiparticles by rapid cooling

Nature Nanotechnology

Michael Schneider

Thomas Brächer

David Breitbach

Viktor Lauer

Philipp Pirro

...

2020/6

See List of Professors in Thomas Brächer University(Technische Universität Kaiserslautern)