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Autori principali: Wu, Yangliu, Peng, Bo
Natura: Preprint
Pubblicazione: 2023
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Accesso online:https://arxiv.org/abs/2307.05363
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author Wu, Yangliu
Peng, Bo
author_facet Wu, Yangliu
Peng, Bo
contents As an advanced imaging system, the magneto-optical-electric joint-measurement scanning imaging system (MOEJSI) brings spectroscopic techniques with unmatched spatial resolution to very low temperature, high magnetic field and high electric field measurements. It was developed for investigating the magnetic and ferroelectric properties and their mutual control through magneto-optical-electric joint-measurements, besides Raman and photoluminescence features. In particular, the reflective magnetic circular dichroism (RMCD) loops and imaging, linear dichroism (LD) imaging and polarization-electric field hysteresis loop can be achieved when simultaneously applied high magnetic field (7 T) and electric field (100 V) at low temperature of 10 K.
format Preprint
id arxiv_https___arxiv_org_abs_2307_05363
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Magneto-optical-electric joint-measurement scanning imaging system for identification of two-dimensional vdW multiferroic
Wu, Yangliu
Peng, Bo
Applied Physics
Materials Science
As an advanced imaging system, the magneto-optical-electric joint-measurement scanning imaging system (MOEJSI) brings spectroscopic techniques with unmatched spatial resolution to very low temperature, high magnetic field and high electric field measurements. It was developed for investigating the magnetic and ferroelectric properties and their mutual control through magneto-optical-electric joint-measurements, besides Raman and photoluminescence features. In particular, the reflective magnetic circular dichroism (RMCD) loops and imaging, linear dichroism (LD) imaging and polarization-electric field hysteresis loop can be achieved when simultaneously applied high magnetic field (7 T) and electric field (100 V) at low temperature of 10 K.
title Magneto-optical-electric joint-measurement scanning imaging system for identification of two-dimensional vdW multiferroic
topic Applied Physics
Materials Science
url https://arxiv.org/abs/2307.05363