Interplay of energy and charge transfer in WSe2/CrSBr heterostructures

Fuente: arXiv
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Main Authors: de Toledo, José Roberto, de Brito, Caique Serati, Rosa, Barbara L. T., Cadore, Alisson R., Rabahi, César Ricardo, Junior, Paulo E. Faria, de Brito, Ana Carolina Ferreira, Ghiasi, Talieh S., Ingla-Aynés, Josep, Schüller, Christian, van der Zant, Herre S. J., Reitzenstein, Stephan, Barcelos, Ingrid D., Dirnberger, Florian, Gobato, Yara Galvão
Format: Preprint
Published: 2025
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author de Toledo, José Roberto
de Brito, Caique Serati
Rosa, Barbara L. T.
Cadore, Alisson R.
Rabahi, César Ricardo
Junior, Paulo E. Faria
de Brito, Ana Carolina Ferreira
Ghiasi, Talieh S.
Ingla-Aynés, Josep
Schüller, Christian
van der Zant, Herre S. J.
Reitzenstein, Stephan
Barcelos, Ingrid D.
Dirnberger, Florian
Gobato, Yara Galvão
author_facet de Toledo, José Roberto
de Brito, Caique Serati
Rosa, Barbara L. T.
Cadore, Alisson R.
Rabahi, César Ricardo
Junior, Paulo E. Faria
de Brito, Ana Carolina Ferreira
Ghiasi, Talieh S.
Ingla-Aynés, Josep
Schüller, Christian
van der Zant, Herre S. J.
Reitzenstein, Stephan
Barcelos, Ingrid D.
Dirnberger, Florian
Gobato, Yara Galvão
contents Van der Waals heterostructures (vdWHs) composed of transition-metal dichalcogenides (TMDs) and layered magnetic semiconductors offer great opportunities to manipulate exciton and valley properties of TMDs. Here, we present magneto-photoluminescence (PL) studies in a WSe2 monolayer (ML) on a CrSBr crystal, an anisotropic layered antiferromagnetic semiconductor. Our results reveal unique behavior of each of the ML-WSe2 PL peaks under magnetic field that is distinct from the pristine case. An intriguing feature is the clear enhancement of the PL intensity that we observe each time the external magnetic field tunes the energy of an exciton in CrSBr into resonance with one of the optical states of WSe2. This result suggests a magnetic field-controlled resonant energy transfer (RET) beyond other effects reported in similar structures. Our work provides deep insight on the importance of different mechanisms into magnetic vdWHs and underscores its great potential for light harvesting and emission enhancement of two-dimensional materials.
format Preprint
id arxiv_https___arxiv_org_abs_2509_00810
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Interplay of energy and charge transfer in WSe2/CrSBr heterostructures
de Toledo, José Roberto
de Brito, Caique Serati
Rosa, Barbara L. T.
Cadore, Alisson R.
Rabahi, César Ricardo
Junior, Paulo E. Faria
de Brito, Ana Carolina Ferreira
Ghiasi, Talieh S.
Ingla-Aynés, Josep
Schüller, Christian
van der Zant, Herre S. J.
Reitzenstein, Stephan
Barcelos, Ingrid D.
Dirnberger, Florian
Gobato, Yara Galvão
Materials Science
Van der Waals heterostructures (vdWHs) composed of transition-metal dichalcogenides (TMDs) and layered magnetic semiconductors offer great opportunities to manipulate exciton and valley properties of TMDs. Here, we present magneto-photoluminescence (PL) studies in a WSe2 monolayer (ML) on a CrSBr crystal, an anisotropic layered antiferromagnetic semiconductor. Our results reveal unique behavior of each of the ML-WSe2 PL peaks under magnetic field that is distinct from the pristine case. An intriguing feature is the clear enhancement of the PL intensity that we observe each time the external magnetic field tunes the energy of an exciton in CrSBr into resonance with one of the optical states of WSe2. This result suggests a magnetic field-controlled resonant energy transfer (RET) beyond other effects reported in similar structures. Our work provides deep insight on the importance of different mechanisms into magnetic vdWHs and underscores its great potential for light harvesting and emission enhancement of two-dimensional materials.
title Interplay of energy and charge transfer in WSe2/CrSBr heterostructures
topic Materials Science
url https://arxiv.org/abs/2509.00810