Very happy to see two @ThorFet papers published in @ScienceMagazine. In these two works, we show how to convert mid-infrared to visible light using molecular optomechanics.
How to make the shortest bimodal interferometer? Use hyperbolic metamaterials embedded in an integrated waveguide. Check our last paper: #OSA_OL https://t.co/1WYSQmXXU1
📸📷Incluimos también unas imágenes de la #Photonic#Forge, celebrada hoy para conectar la comunidad investigadora en #fotónica de la UPV con alumnado de 3º y 4º de Ingeniería Física y Telecomunicación.
¡Nos vemos en la próxima edición!
Longitudinal chiral forces in photonic integrated waveguides to separate particles with realistically small chirality - Read on https://t.co/Ha0xq7Bcbv @degruyter_brill @Nanophotonics_J @chiralforce
Family travel from Amsterdam to Bangkok from @Schiphol with @klm. After mot being able to to the check in online due to his, my 10 year old kid gets a seat separate from my wife and me. Can anyone believe that?
New paper released! We demonstrate an alternative route to build optomechanical cavities on GaP epitaxially grown on nominally (001)-oriented Si by using a two-step process consisting of a low-temperature etching of GaP followed by selective etching of the underneath silicon.
🔛 Todo preparado para escuchar a nuestra ministra de Ciencia, Innovación y Universidades, @CienciaGob@DianaMorantR dirigirse a los medios y contarles de primera mano el trabajo que se hace en nuestras instalaciones del @upvntc de la @UPV.
#micronanofabs#ICTS
New pre-print out!
https://t.co/ADy9wGoW4q
Here we show that optical longitudinal chiral forces in dielectric waveguides can separate chiral nanoparticles even in the case of low chirality. @chiralforce@pakrodfor
New paper in Nano Letters! Here we show how to integrate nanoparticle-on-a-mirror cavities with SiN waveguides for excitation and readout of Raman signals in molecular monolayers. Super interesting! https://t.co/uB6PcaRW6I
Our @chiralforce paper studying transversal chiral forces in SiN waveguides has just been released: https://t.co/HD010xFBoe. Here, we show the feasibility of separating enantiomers using optical forces in photonic integrated circuits. @i_RDiez, @pakrodfor
@Andres_2DMat@AgEInves@CienciaGob Y no tienen en cuenta que en muchas revistas ya ni dejan poner una frase, si no que piden las referencias de los proyectos financiadores cuando haces el envío online.
Just released in @PhysRevA: Influence of thermal effects on the optomechanical coupling rate in acousto-optic cavities https://t.co/96lBsvo6aN . The first paper of Raúl Ortiz as the first author, congrats!!