Michael Rüsing

About Michael Rüsing

Michael Rüsing, With an exceptional h-index of 15 and a recent h-index of 15 (since 2020), a distinguished researcher at Technische Universität Dresden, specializes in the field of Ferroelectrics, nonlinear optics, microscopy, lithium niobate.

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

High-temperature domain wall current in Mg-doped lithium niobate single crystals up to 400 {\deg} C

Lattice dynamics of LiNbTaO solid solutions: Theory and experiment

Evaluation and thermodynamic optimization of phase diagram of lithium niobate tantalate solid solutions

Surface-near domain engineering in multi-domain x-cut lithium niobate tantalate mixed crystals

Depth resolution in piezoresponse force microscopy

Comparative study of photo-induced electronic transport along ferroelectric domain walls in lithium niobate single crystals

Equivalent-circuit model that quantitatively describes domain-wall conductivity in ferroelectric

Ferroelectric Hysteresis Measurement in the Lithium Niobate‐Lithium Tantalate Single‐Crystalline Family: Prospects for Lithium Niobate‐Tantalate

Michael Rüsing Information

University

Position

Research group leader

Citations(all)

1299

Citations(since 2020)

1159

Cited By

423

hIndex(all)

15

hIndex(since 2020)

15

i10Index(all)

19

i10Index(since 2020)

18

Email

University Profile Page

Google Scholar

Michael Rüsing Skills & Research Interests

Ferroelectrics

nonlinear optics

microscopy

lithium niobate

Top articles of Michael Rüsing

High-temperature domain wall current in Mg-doped lithium niobate single crystals up to 400 {\deg} C

arXiv preprint arXiv:2404.01214

2024/4/1

Lattice dynamics of LiNbTaO solid solutions: Theory and experiment

arXiv preprint arXiv:2403.17594

2024/3/26

Michael Rüsing
Michael Rüsing

H-Index: 10

Simone Sanna
Simone Sanna

H-Index: 21

Evaluation and thermodynamic optimization of phase diagram of lithium niobate tantalate solid solutions

arXiv preprint arXiv:2403.07527

2024/3/12

Surface-near domain engineering in multi-domain x-cut lithium niobate tantalate mixed crystals

arXiv preprint arXiv:2403.04590

2024/3/7

Depth resolution in piezoresponse force microscopy

arXiv preprint arXiv:2403.02797

2024/3/5

Michael Rüsing
Michael Rüsing

H-Index: 10

Comparative study of photo-induced electronic transport along ferroelectric domain walls in lithium niobate single crystals

arXiv preprint arXiv:2402.17508

2024/2/27

Equivalent-circuit model that quantitatively describes domain-wall conductivity in ferroelectric

Physical Review Applied

2024/2/5

Ahmet Suna
Ahmet Suna

H-Index: 1

Michael Rüsing
Michael Rüsing

H-Index: 10

Ferroelectric Hysteresis Measurement in the Lithium Niobate‐Lithium Tantalate Single‐Crystalline Family: Prospects for Lithium Niobate‐Tantalate

physica status solidi (a)

2024

Michael Rüsing
Michael Rüsing

H-Index: 10

Comparing transmission-and epi-BCARS: a round robin on solid-state materials

Applied Optics

2024/1/1

Hall mobilities and sheet carrier densities in a single conductive ferroelectric domain wall

Physical Review Applied

2023/12/26

Michael Rüsing
Michael Rüsing

H-Index: 10

Vibrational Properties of the Potassium Titanyl Phosphate Crystal Family

Crystals

2023/9/25

Solid solutions of lithium niobate and lithium tantalate: crystal growth and the ferroelectric transition

Ferroelectrics

2023/9/10

Modeling nonlinear optical interactions of focused beams in bulk crystals and thin films: A phenomenological approach

Journal of Applied Physics

2023/3/28

Vibrational properties of and under uniaxial stress

Physical Review Materials

2023/2/27

Impact of 3D curvature on the polarization orientation in non-Ising domain walls

Nano Letters

2023/1/20

Investigation of periodic poling in LNOI

2023

Turn all the lights off: Bright-and dark-field second-harmonic microscopy to select contrast mechanisms for ferroelectric domain walls

Journal of Applied Physics

2022/6/28

Michael Rüsing
Michael Rüsing

H-Index: 10

High-speed hyperspectral imaging of ferroelectric domain walls using broadband coherent anti-Stokes Raman scattering

Applied Physics Letters

2022/4/18

Sven Reitzig
Sven Reitzig

H-Index: 1

Michael Rüsing
Michael Rüsing

H-Index: 10

Investigation of ferroelectric domain walls in periodically-poled LiNbO3 single crystals by polarization-sensitive optical coherence tomography

2022/4/1

Jonas Golde
Jonas Golde

H-Index: 6

Michael Rüsing
Michael Rüsing

H-Index: 10

Brillouin and Raman imaging of domain walls in periodically-poled 5%-MgO: LiNbO3

Optics Express

2022/2/14

See List of Professors in Michael Rüsing University(Technische Universität Dresden)

Co-Authors

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