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Photonic van der Waals integration from 2D materials to 3D nanomembranes
The integration of functional nanomaterials and heterostructures with photonic architectures
has laid the foundation for important photonic and optoelectronic applications. The advent of …
has laid the foundation for important photonic and optoelectronic applications. The advent of …
Moiré photonics and optoelectronics
Moiré superlattices, the artificial quantum materials, have provided a wide range of
possibilities for the exploration of completely new physics and device architectures. In this …
possibilities for the exploration of completely new physics and device architectures. In this …
Current progress in 2D metal–organic frameworks for electrocatalysis
The 2D nanosheets of metal–organic frameworks (MOFs) have recently emerged as a
promising material that makes them valuable in widespread electrocatalytic fields due to …
promising material that makes them valuable in widespread electrocatalytic fields due to …
Locally strained 2D materials: preparation, properties, and applications
Abstract 2D materials are promising for strain engineering due to their atomic thickness and
exceptional mechanical properties. In particular, non‐uniform and localized strain can be …
exceptional mechanical properties. In particular, non‐uniform and localized strain can be …
Engineering quantum light sources with flat optics
Quantum light sources are essential building blocks for many quantum technologies,
enabling secure communication, powerful computing, and precise sensing and imaging …
enabling secure communication, powerful computing, and precise sensing and imaging …
Solid‐State Single‐Photon Sources: Recent Advances for Novel Quantum Materials
In this review, the current landscape of emergent quantum materials for quantum photonic
applications is described. The review focuses on three specific solid‐state platforms: single …
applications is described. The review focuses on three specific solid‐state platforms: single …
Twisted van der Waals quantum materials: fundamentals, tunability, and applications
Twisted van der Waals (vdW) quantum materials have emerged as a rapidly develo** field
of two-dimensional (2D) semiconductors. These materials establish a new central research …
of two-dimensional (2D) semiconductors. These materials establish a new central research …
Monolayer-based single-photon source in a liquid-helium-free open cavity featuring 65% brightness and quantum coherence
Solid-state single-photon sources are central building blocks in quantum information
processing. Atomically thin crystals have emerged as sources of nonclassical light; however …
processing. Atomically thin crystals have emerged as sources of nonclassical light; however …
Exploring Trends and Opportunities in Quantum‐Enhanced Advanced Photonic Illumination Technologies
The development of quantum‐enabled photonic technologies has opened new avenues for
advanced illumination across diverse fields, including sensing, computing, materials, and …
advanced illumination across diverse fields, including sensing, computing, materials, and …
Can 2D semiconductors be game-changers for nanoelectronics and photonics?
2D semiconductors have interesting physical and chemical attributes that have led them to
become one of the most intensely investigated semiconductor families in recent history …
become one of the most intensely investigated semiconductor families in recent history …