Physical limits in electromagnetism
Photonic devices play an increasingly important role in advancing physics and engineering.
Although improvements in nanofabrication and computational methods have driven …
Although improvements in nanofabrication and computational methods have driven …
Intelligent designs in nanophotonics: from optimization towards inverse creation
Applying intelligence algorithms to conceive nanoscale meta-devices becomes a flourishing
and extremely active scientific topic over the past few years. Inverse design of functional …
and extremely active scientific topic over the past few years. Inverse design of functional …
Coupling spin defects in hexagonal boron nitride to monolithic bullseye cavities
Color centers in hexagonal boron nitride (hBN) are becoming an increasingly important
building block for quantum photonic applications. Herein, we demonstrate the efficient …
building block for quantum photonic applications. Herein, we demonstrate the efficient …
Optomechanical ring resonator for efficient microwave-optical frequency conversion
Phonons traveling in solid-state devices are emerging as a universal excitation for coupling
different physical systems. Phonons at microwave frequencies have a similar wavelength to …
different physical systems. Phonons at microwave frequencies have a similar wavelength to …
Diamond integrated quantum nanophotonics: spins, photons and phonons
Integrated photonic devices in diamond have tremendous potential for many quantum
applications, including long-distance quantum communication, quantum information …
applications, including long-distance quantum communication, quantum information …
Hybrid integration of gap photonic crystal cavities with silicon-vacancy centers in diamond by stamp-transfer
Optically addressable solid-state defects are emerging as some of the most promising qubit
platforms for quantum networks. Maximizing photon-defect interaction by nanophotonic …
platforms for quantum networks. Maximizing photon-defect interaction by nanophotonic …
Multicone diamond waveguides for nanoscale quantum sensing
The long-lived electronic spin of the nitrogen-vacancy (NV) center in diamonds is a
promising quantum sensor for detecting nanoscopic magnetic and electric fields in various …
promising quantum sensor for detecting nanoscopic magnetic and electric fields in various …
Inverse design in quantum nanophotonics: combining local-density-of-states and deep learning
Recent advances in inverse-design approaches for discovering optical structures based on
desired functional characteristics have reshaped the landscape of nanophotonic structures …
desired functional characteristics have reshaped the landscape of nanophotonic structures …
Interpretable inverse-designed cavity for on-chip nonlinear photon pair generation
Inverse design is a powerful tool in wave physics for compact, high-performance devices. To
date, applications in photonics have mostly been limited to linear systems and it has rarely …
date, applications in photonics have mostly been limited to linear systems and it has rarely …
A review of gallium phosphide nanophotonics towards omnipotent nonlinear devices
Y Wang, Z Pan, Y Yan, Y Yang, W Zhao, N Ding… - …, 2024 - degruyter.com
Gallium phosphide (GaP) has been increasingly prioritized, fueled by the enormous
demands in visible light applications such as biomedical and quantum technologies. GaP …
demands in visible light applications such as biomedical and quantum technologies. GaP …