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Polaritons in van der Waals heterostructures
Abstract 2D monolayers supporting a wide variety of highly confined plasmons, phonon
polaritons, and exciton polaritons can be vertically stacked in van der Waals …
polaritons, and exciton polaritons can be vertically stacked in van der Waals …
Nanophotonic route to control electron behaviors in 2D materials
Abstract Two-dimensional (2D) Dirac materials, eg, graphene and transition metal
dichalcogenides (TMDs), are one-atom-thick monolayers whose electronic behaviors are …
dichalcogenides (TMDs), are one-atom-thick monolayers whose electronic behaviors are …
[SÁCH][B] Semiconductor physics
KW Böer, UW Pohl - 2023 - books.google.com
This handbook gives a complete and detailed survey of the field of semiconductor physics. It
addresses every fundamental principle, the most important research topics and results, as …
addresses every fundamental principle, the most important research topics and results, as …
Machine learning for optical scanning probe nanoscopy
The ability to perform nanometer‐scale optical imaging and spectroscopy is key to
deciphering the low‐energy effects in quantum materials, as well as vibrational fingerprints …
deciphering the low‐energy effects in quantum materials, as well as vibrational fingerprints …
High performance 1D–2D CuO/MoS 2 photodetectors enhanced by femtosecond laser-induced contact engineering
The integration of 2D materials with other dimensional materials opens up rich possibilities
for both fundamental physics and exotic nanodevices. However, current mixed-dimensional …
for both fundamental physics and exotic nanodevices. However, current mixed-dimensional …
Spectroscopic ellipsometry for low-dimensional materials and heterostructures
Discovery of low-dimensional materials has been of great interest in physics and material
science. Optical permittivity is an optical fingerprint of material electronic structures, and thus …
science. Optical permittivity is an optical fingerprint of material electronic structures, and thus …
Learning‐effective mixed‐dimensional halide perovskite QD synaptic array for self‐rectifying and luminous artificial neural networks
A mixed‐dimensional heterostructure comprising nanomaterials with varying dimensions
provides a promising structure for an artificial synapse for reconfigurable neuromorphic …
provides a promising structure for an artificial synapse for reconfigurable neuromorphic …
Optically driven plasmons in graphene/hBN van der Waals heterostructures: simulating s-SNOM measurements
Converting transverse photons into longitudinal two-dimensional plasmon-–polaritons (2D-
PP) and vice versa presents a significant challenge within the fields of photonics and …
PP) and vice versa presents a significant challenge within the fields of photonics and …
Nonlinear optics of graphitic carbon allotropes: from 0D to 3D
Z Tan, J Dong, Y Liu, Q Luo, Z Li, T Yun, T Jiang… - Nanoscale, 2025 - pubs.rsc.org
The dimensionality of materials fundamentally influences their electronic and optical
properties, presenting a complex interplay with nonlinear optical (NLO) characteristics that …
properties, presenting a complex interplay with nonlinear optical (NLO) characteristics that …
Probing the inelastic electron tunneling via the photocurrent in a vertical graphene van der Waals heterostructure
B **e, Z Ji, J Wu, R Zhang, Y **, K Watanabe… - ACS …, 2023 - ACS Publications
Inelastic electron tunneling (IET), accompanied by energy transfer between the tunneling
charge carriers and other elementary excitations, is widely used to investigate the collective …
charge carriers and other elementary excitations, is widely used to investigate the collective …