activity
20182021
most citedExperimental demonstration of the suppression of optical phonon splitting in 2D materials by Raman spectroscopy

14 citations · 14 across the 1 of their papers we have counts for

collaborators

7 papers

cond-mat.mes-hall2021

Transport measurements on van der Waals heterostructures under pressure

Bálint Fülöp, Albin Márffy, Endre Tóvári +10

The interlayer coupling, which has a strong influence on the properties of van der Waals heterostructures, strongly depends on the interlayer distance. Although considerable theore…

cond-mat.mtrl-sci202014 cited

Experimental demonstration of the suppression of optical phonon splitting in 2D materials by Raman spectroscopy

Marta De Luca, Xavier Cartoixà, David I. Indolese +7

Raman spectroscopy is one of the most extended experimental techniques to investigate thin-layered 2D materials. For a complete understanding and modeling of the Raman spectrum of…

cond-mat.mes-hall2020

Compact SQUID realized in a double layer graphene heterostructure

David I. Indolese, Paritosh Karnatak, Artem Kononov +7

Two-dimensional systems that host one-dimensional helical states are exciting from the perspective of scalable topological quantum computation when coupled with a superconductor. G…

cond-mat.mes-hall2020

Out-of-plane corrugations in graphene based van der Waals heterostructures

Simon Zihlmann, Péter Makk, Mirko K. Rehmann +7

Two dimensional materials are usually envisioned as flat, truly 2D layers. However out-of-plane corrugations are inevitably present in these materials. In this manuscript, we show…

cond-mat.mes-hall2019

Mobility enhancement in graphene by in situ reduction of random strain fluctuations

Lujun Wang, Péter Makk, Simon Zihlmann +5

Microscopic corrugations are ubiquitous in graphene even when placed on atomically flat substrates. These result in random local strain fluctuations limiting the carrier mobility o…

cond-mat.mes-hall2018

Wideband and on-chip excitation for dynamical spin injection into graphene

D. I. Indolese, S. Zihlmann, P. Makk +3

Graphene is an ideal material for spin transport as very long spin relaxation times and lengths can be achieved even at room temperature. However, electrical spin injection is chal…