Michael Huth

About Michael Huth

Michael Huth, With an exceptional h-index of 41 and a recent h-index of 27 (since 2020), a distinguished researcher at Goethe-Universität Frankfurt am Main, specializes in the field of Thin films, electron beam induced deposition, superconductivity, magnetism, metamaterials.

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

Three-dimensional magnetic nanotextures with high-order vorticity in soft magnetic wireframes

Strain-induced magnetic anisotropy of multi-domain epitaxial EuPd2 thin films

Epitaxial thin films of binary Eu-compounds close to a valence transition

Pillar Growth by Focused Electron Beam-Induced Deposition Using a Bimetallic Precursor as Model System: High-Energy Fragmentation vs. Low-Energy Decomposition

Fast and Efficient Simulation of the FEBID Process with Thermal Effects

Magnetic properties of multi-domain epitaxial EuPd thin films

3D Magnonic Conduits by Direct Write Nanofabrication

Miniaturization of an Osmotic Pressure-Based Glucose Sensor for Continuous Intraperitoneal and Subcutaneous Glucose Monitoring by Means of Nanotechnology

Michael Huth Information

University

Position

Professor for experimental condensed matter physics Germany

Citations(all)

5283

Citations(since 2020)

2731

Cited By

3566

hIndex(all)

41

hIndex(since 2020)

27

i10Index(all)

118

i10Index(since 2020)

71

Email

University Profile Page

Google Scholar

Michael Huth Skills & Research Interests

Thin films

electron beam induced deposition

superconductivity

magnetism

metamaterials

Top articles of Michael Huth

Title

Journal

Author(s)

Publication Date

Three-dimensional magnetic nanotextures with high-order vorticity in soft magnetic wireframes

Nature Communications

Oleksii M Volkov

Oleksandr V Pylypovskyi

Fabrizio Porrati

Florian Kronast

Jose A Fernandez-Roldan

...

2024/3/11

Strain-induced magnetic anisotropy of multi-domain epitaxial EuPd2 thin films

Journal of Physics: Materials

Alfons Georg Schuck

Sebastian Kölsch

Adrian Valadkhani

Igor I Mazin

Roser Valenti

...

2024/2/27

Epitaxial thin films of binary Eu-compounds close to a valence transition

Thin Solid Films

Sebastian Kölsch

Alfons Georg Schuck

Michael Huth

2024/2/15

Pillar Growth by Focused Electron Beam-Induced Deposition Using a Bimetallic Precursor as Model System: High-Energy Fragmentation vs. Low-Energy Decomposition

Nanomaterials

Robert Winkler

Michele Brugger-Hatzl

Fabrizio Porrati

David Kuhness

Thomas Mairhofer

...

2023/11/6

Fast and Efficient Simulation of the FEBID Process with Thermal Effects

Nanomaterials

Alexander Kuprava

Michael Huth

2023/2/25

Magnetic properties of multi-domain epitaxial EuPd thin films

arXiv preprint arXiv:2311.00501

Alfons G Schuck

Sebastian Kölsch

Adrian Valadkhani

Igor I Mazin

Roser Valentí

...

2023/11/1

3D Magnonic Conduits by Direct Write Nanofabrication

Nanomaterials

Sebastian Lamb-Camarena

Fabrizio Porrati

Alexander Kuprava

Qi Wang

Michal Urbánek

...

2023/6/24

Miniaturization of an Osmotic Pressure-Based Glucose Sensor for Continuous Intraperitoneal and Subcutaneous Glucose Monitoring by Means of Nanotechnology

Sensors

Andreas Pfützner

Barbora Tencer

Boris Stamm

Mandar Mehta

Preeti Sharma

...

2023/5/7

Site-Selective Chemical Vapor Deposition on Direct-Write 3D Nanoarchitectures

ACS nano

Fabrizio Porrati

Sven Barth

Gian Carlo Gazzadi

Stefano Frabboni

Oleksii M Volkov

...

2023/3/14

High-Precision 3D-Nanoprinting for Sheet-like Structures via FEBID

Anna Weitzer

Michael Huth

Harald Plank

2022

Expanding FEBID-Based 3D-Nanoprinting toward Closed High-Fidelity Nanoarchitectures

ACS Applied Electronic Materials

Anna Weitzer

Michael Huth

Gerald Kothleitner

Harald Plank

2022/2/9

Highly‐Packed Proximity‐Coupled DC‐Josephson Junction Arrays by a Direct‐Write Approach

Advanced functional materials

Fabrizio Porrati

Felix Jungwirth

Sven Barth

Gian Carlo Gazzadi

Stefano Frabboni

...

2022/9

Charge Transport inside TiO2 Memristors Prepared via FEBID

Nanomaterials

Markus Baranowski

Roland Sachser

Bratislav P Marinković

Stefan Dj Ivanović

Michael Huth

2022/11/23

Advances in magnetics roadmap on spin-wave computing

IEEE Transactions on Magnetics

Andrii V Chumak

Pavel Kabos

Mingzhong Wu

Claas Abert

Christoph Adelmann

...

2022/2/7

Forward volume magnetoacoustic spin wave excitation with micron-scale spatial resolution

APL Materials

M Küß

F Porrati

Andreas Hörner

M Weiler

Manfred Albrecht

...

2022/8/1

Clamping effect on temperature-induced valence transition in epitaxial thin films grown on MgO(001)

Physical Review Materials

Sebastian Kölsch

Alfons Schuck

Michael Huth

Olena Fedchenko

Dmitry Vasilyev

...

2022/11/10

Single-electron transport in focused electron beam induced deposition (FEBID)-based nanostructures

Giorgia Di Prima

2022

Expanding High-fidelity 3D-Nanoprinting-From Meshes toward Closed Structures

Anna Weitzer

Michael Huth

Gerald Kothleitner

Harald Plank

2022/4/21

Complex-shaped 3D nanoarchitectures for magnetism and superconductivity

Oleksandr V Dobrovolskiy

Oleksandr V Pylypovskyi

Luka Skoric

Amalio Fernández-Pacheco

Arjen Van Den Berg

...

2022/11/3

Direct-Write 3D Nanoprinting of High-Resolution Magnetic Force Microscopy Nanoprobes

Michele Brugger-Hatzl

Robert Winkler

L Seewald

S Mietsche

Thomas Radlinger

...

2022

See List of Professors in Michael Huth University(Goethe-Universität Frankfurt am Main)

Co-Authors

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