Top Tweets for #OpticsIn2023
Highlighted in OPN's #OpticsIn2023:
Researchers from @BenGurionU and @WeizmannScience studied the brilliant white coloration of cleaner shrimp to reveal how birefringence reduces optical crowding and enhances scattering efficiency.
https://t.co/WwNUyrAGmH

Highlighted in OPN's #OpticsIn2023:
Researchers at @UNavarra elaborated a theoretical framework based on macroscopic quantum electrodynamics to address incandescence in time-modulated media.
https://t.co/cUrCGR4Uy4

Highlighted in OPN's #OpticsIn2023:
Researchers demonstrated a versatile approach to synthesizing convoluted ultrafast light structures in which the spatial and temporal dimensions can be precisely correlated on demand.
https://t.co/lkzJt3fmJg

📢Un trabajo de los investigadores de la UPNA Iñigo Liberal y J. Enrique Vázquez-Lozano, seleccionado como uno de los mejores del año en el campo de la óptica y la fotónica 👉https://t.co/CeInRfxId6
#Opticsin2023

Highlighted in OPN's #OpticsIn2023:
Researchers @WitsUniversity have shown how to find invariant forms of light that come out of a turbulent channel the same as they were put in—distortion free.
https://t.co/vqYIHR7S9X

Highlighted in OPN's #OpticsIn2023:
Non-line-of-sight (NLOS) free-space optical (FSO) communication was demonstrated using structured light by leveraging the power of deep learning and structured-light speckle patterns.
https://t.co/gvlGDYdFhV

Highlighted in OPN's #OpticsIn2023:
The experimental observation of optical Berry phases in dielectric Möbius strip cavities with finely adjusted transverse cross-sections.
https://t.co/iykkHtZ8rM

Highlighted in OPN's #OpticsIn2023:
Researchers from @BU_Tweets and @OFS-Fitel demonstrated that cutoff modes carrying sufficiently high orbital angular momentum (OAM) are naturally resistant to perturbations and have low losses.
https://t.co/F8zFxvMG0R

Highlighted in OPN's #OpticsIn2023:
Contactless surface-enhanced Raman spectroscopy measurements are made possible with an ultrathin, flexible, stretchable, adhesive and biocompatible gold-deposited polyvinyl alcohol nanomesh substrate.
https://t.co/IHM8ugQHZP

Highlighted in OPN's #OpticsIn2023:
A folded-beam-path architecture for broadband light is used to build highly efficient and compact spectral sensors without additional dichroic optics.
https://t.co/sySzrZEhzf

Highlighted in OPN's #OpticsIn2023: The interaction of focused femtosecond infrared light with hydrogen-bonded liquids generates unique diffraction patterns that can be observed with a digital camera and considered the optical fingerprints of the liquid.
https://t.co/QfGhNFO42t

Highlighted in OPN's #OpticsIn2023:
Researchers at @jnu1906 and @CityUHongKong demonstrated a photoacoustic endoscope based on fiber optics that they hope will have clinical applications, helping distinguish cancerous tissues from healthy ones.
https://t.co/siRSy3ajdA

Highlighted in OPN's #OpticsIn2023: Researchers demonstrated real-time measurement of natural vibrations of individual mesoscopic particles using an optical microresonator, extending vibrational spectroscopy to the megahertz-to-gigahertz frequency window. https://t.co/knNIS5eWO7

Highlighted in OPN's #OpticsIn2023: Resonant light confinement in air using a void created in a high-index material that supports localized resonant modes, which confines radiation even in wavelength regions of significant host-material absorption. https://t.co/LlbAIiuoj8

Highlighted in OPN's #OpticsIn2023: A method for dynamically tuning Fabry-Pérot resonances without the need for liquids by embedding a nematic liquid-crystalline network as the active layer of a metal-insulator-metal cavity. https://t.co/uGRPGOrzJc

Highlighted in OPN's #OpticsIn2023: Researchers showed that transverse snake instabilities can be tamed in suitable optical cylindrical microcavities, leading the pronounced zigzag spatiotemporal waves to appear as stationary states. https://t.co/80lAKDlVRO

Highlighted in OPN's #OpticsIn2023: Researchers demonstrated an optical microcavity containing plasma inside, which they believe could transform optoelectronics by providing an additional phase of matter for electrically controlling light. https://t.co/9ppSc7j0UZ

Highlighted in OPN's #OpticsIn2023: Options to expand the maximum diameter of AlGaAs coatings to 20 cm and beyond, forging a path to produce low-noise mirrors amenable to next-generation gravitational-wave observatories. https://t.co/PUwtGgv9PZ

Highlighted in OPN's #OpticsIn2023: Researchers at @Tsinghua_Uni developed a polymer-free 3D-printing technique called photoexcitation-induced chemical bonding to directly assemble and print colloidal nanocrystals into 3D nanostructures. https://t.co/rOYhTkfQSu

Highlighted in OPN's #OpticsIn2023: Researchers discovered a novel van der Waals NbOCl2 crystal that shows an unprecedented χ(2) coefficient and efficiency, and they used it to construct the thinnest-yet photon-pair source. https://t.co/vgOkPiqLJY

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