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Hybrid integrated quantum photonic circuits
Recent developments in chip-based photonic quantum circuits have radically impacted
quantum information processing. However, it is challenging for monolithic photonic platforms …
quantum information processing. However, it is challenging for monolithic photonic platforms …
Nanodiamonds: A Cutting‐Edge Approach to Enhancing Biomedical Therapies and Diagnostics in Biosensing
Nanodiamonds (NDs) have garnered attention in the field of nanomedicine due to their
unique properties. This review offers a comprehensive overview of NDs synthesis methods …
unique properties. This review offers a comprehensive overview of NDs synthesis methods …
[HTML][HTML] Nanodiamonds: Synthesis, properties, and applications in nanomedicine
JX Qin, XG Yang, CF Lv, YZ Li, KK Liu, JH Zang… - Materials & Design, 2021 - Elsevier
Nanodiamonds (NDs) have excellent mechanical and optical properties, large surface area,
easy bioconjugation and high biocompatibility, which makes them especially appealing for …
easy bioconjugation and high biocompatibility, which makes them especially appealing for …
Multiple channelling single-photon emission with scattering holography designed metasurfaces
Channelling single-photon emission in multiple well-defined directions and simultaneously
controlling its polarization characteristics is highly desirable for numerous quantum …
controlling its polarization characteristics is highly desirable for numerous quantum …
Ultra-efficient generation of time-energy entangled photon pairs in an InGaP photonic crystal cavity
The typical approaches to generate heralded single photons rely on parametric processes,
with the advantage of generating highly entangled states at the price of a random pair …
with the advantage of generating highly entangled states at the price of a random pair …
Observation of large spontaneous emission rate enhancement of quantum dots in a broken-symmetry slow-light waveguide
Quantum states of light and matter can be manipulated on the nanoscale to provide a
technological resource for aiding the implementation of scalable photonic quantum …
technological resource for aiding the implementation of scalable photonic quantum …
[HTML][HTML] Enhanced spectral density of a single germanium vacancy center in a nanodiamond by cavity integration
F Feuchtmayr, R Berghaus, S Sachero, G Bayer… - Applied Physics …, 2023 - pubs.aip.org
Color centers in diamond, among them the negatively charged germanium vacancy (GeV−),
are promising candidates for many applications of quantum optics, such as a quantum …
are promising candidates for many applications of quantum optics, such as a quantum …
Traceable Optical Physical Unclonable Functions Based on Germanium Vacancy in Diamonds
F Jiao, C Lin, L Dong, Y Wu, Y **ao… - … Applied Materials & …, 2024 - ACS Publications
Physical unclonable functions (PUFs) have emerged as an unprecedented solution for
modern information security and anticounterfeiting by virtue of their inherent unclonable …
modern information security and anticounterfeiting by virtue of their inherent unclonable …
Strongly coupled spins of silicon-vacancy centers inside a nanodiamond with sub-megahertz linewidth
The search for long-lived quantum memories, which can be efficiently interfaced with flying
qubits, is longstanding. One possible solution is to use the electron spin of a color center in …
qubits, is longstanding. One possible solution is to use the electron spin of a color center in …
Strip-loaded nanophotonic interfaces for resonant coupling and single-photon routing
We report on the design and simulation of strip-loaded nanophotonic interfaces aimed at
improving resonant coupling and photon routing efficiency. In our design, the guided mode …
improving resonant coupling and photon routing efficiency. In our design, the guided mode …