Type of data Name of datafile/link Author(s) Related (journal, event) Format Keywords


Publication (Post-print)

Understanding the Image Contrast of Material Boundaries in IR Nanoscopy Reaching 5 nm Spatial Resolution

 Mastel, Stefan; 
Govyadinov, Alexander A.;
Maissen, Curdin;
Chuvilin, Andrey;
Berger, Andreas;
Hillenbrand, Rainer
ACS Photonics, 2018, 5 (8), pp 3372–3378 pdf

Scattering-Type Scanning Near-Field Optical Microscopy (S-SNOM)
IR And THz Nanoscopy
Focused Ion Beam (FIB) Machining 


Raw experimental data Raw underlying data for the ACS Photonics, 2018, 5 (8), pp 3372–3378 Mastel, Stefan;
Govyadinov, Alexander A.;

ascii, dump, png, txt, dm3, dat

S-SNOM
IR And THz Nanoscopy

Publication (Post-print) Probes for Ultrasensitive THz Nanoscopy

Curdin Maissen,
Shu Chen,
Elizaveta Nikulina,
Alexander Govyadinov
Rainer Hillenbrand

ACS Photonics, 2019, 6, (5), pp 1279-1288 pdf

THz Near-Field Probes
THz S-SNOM
THz Nanoimaging
Focused Ion Beam (FIB) Machining
Scattering-Type Scanning Near-Field Optical Microscopy (S-SNOM)


Raw experimental data Raw Underlying Data for the ACS Photonics 2019, 6, 5, pp 1279-1288 Curdin Maissen,
Shu Chen,
Elizaveta Nikulina,
txt, png, ascii, dump THz S-SNOM
THz Nanoimaging
S-SNOM

Journal article

Plasmonic Antennas with Electric, Magnetic, and Electromagnetic Hot Spots Based on Babinet’s Principle

Martin Hrtoň,
Andrea Konečná,
Michal Horák,
Tomáš Šikola
Vlastimil Křápek

Phys. Rev. Applied, 2020, 13, 054045 pdf Interference & diffraction of light
Nanoantennas
Plasmonics

Surface plasmon polariton
Finite-difference time-domain method

Raw experimental data Raw underlying data for the Phys. Rev. Applied 13, 054045 Vlastimil Křápek txt Finite-difference time-domain method

Journal article Hybrid Spintronic Materials from Conducting Molecular Quantum Bits

Michal Kern,
Lorenzo Tesi,
David Neusser,
Nadine Rußegger,
Mario Winkler,
Alexander Allgaier,
Yannic M. Gross,
Stefan Bechler,
Hannes S. Funk,
Li‐Te Chang,
Jörg Schulze,
Sabine Ludwigs,
Joris van Slageren 

Adv. Funct. Mater. 2020, 20006882 pdf

charge transport 
conducting polymers 
molecular quantum bits 
quantum coherence 
thin film


Raw experimental data Raw experimental data for the Kern M. et al., Hybrid Spintronic Materials from Conducting Polymers with Molecular Quantum Bits, Adv. Funct. Mater. 2020, 20006882 Michal Kern dat

UV/Vis/NIR spectra
current–voltage measurements
electron spin echo detected field-swept (ESE) spectra


Journal article Terahertz Nanoimaging and Nanospectroscopy of Chalcogenide Phase-Change Materials

Chao Chen, 
Shu Chen,
Ricardo P.S.M. Lobo,
Carlos Maciel-Escudero,
Martin Lewin,
Thomas Taubner,
Wei Xiong,
Ming Xu,
Xinliang Zhang,
Xiangshui Miao,
Peining Li,
Rainer Hillenbrand

ACS Photonics 2020, 7, 12, pp 3499–3506  pdf

Phonons,
Photonics,
Insulators,
Spectroscopy,
Lasers


Raw experimental data Raw data for Chen et al., Terahertz Nanoimaging and Nanospectroscopy of Chalcogenide Phase-Change Materials, ACS Photonics 2020, 7, 12, 3499–3506 Rainer Hillenbrand opj

FTIR transmission spectra 
THz s-SNOM


Journal article

Plasmonic Metasurface Resonators to Enhance Terahertz Magnetic Fields for High-Frequency Electron Paramagnetic Resonance

Lorenzo Tesi, Dominik Bloos, Martin Hrtoň, Adam Beneš, Mario Hentschel,
Michal Kern, Alisa Leavesley, Rainer Hillenbrand, Vlastimil Křápek, Tomáš Šikola,
Joris van Slageren

Small Methods 2021, 2100376

pdf

2D resonators 
electron paramagnetic resonance 
nanostructures 
plasmonic metasurfaces 
self-assembled monolayers 
spintronics 
thin layers

 


Raw experimental data

Plasmonic Metasurface Resonators to Enhance Terahertz Magnetic Fields for High-Frequency Electron Paramagnetic Resonance _experimental dataset

Lorenzo Tesi

dat, csv, txt


electron paramagnetic resonance 
HFEPR

2FD

Our PETER project results by Lorenzo Tesi and PETER published in Small Methods. 30 times better SNR. Potentially 7500.

onlinelibrary.wiley.com/doi/10.1002/sm

This project has received funding from the European Union's Horizon 2020 research and innovation programme under grant agreement No 767227.