After writing ~30,000 words and nearly 3 years of dedicated work by 7 authors spread across 5 time zones, our protocol for building an adaptive-optics assisted isoSTED nanoscope is finally out.
Links:
https://t.co/2WpE4zbOXb
via #NatureComms: we developed an in - situ method to reconstruct 3D fully vectorial info & retrieve pupil functions. It uses phase - modulated focusing & polarization - split detection. Paper is here: https://t.co/spJ0pwK40i. #Optics#Nanophotonics
via #OPG_Optica: Our approach efficiently and accurately models wave propagation between arbitrary, non-parallel planes by manipulating the source field's angular spectrum and applying a zero-padding-free, uniformly sampled Fourier transform. https://t.co/XtbtHshY51
A new cover story from our lab. Imaging at a 3D resolution of sub-10 nm using the combination of STED nanoscopy and Expansion microscopy~
https://t.co/79Uq0l9Bgk
End 2022 with a cover story! Merry Christmas & Happy new year!
Accurate Background Reduction in Adaptive Optical Three-Dimensional Stimulated Emission Depletion Nanoscopy by Dynamic Phase Switching https://t.co/L2QkuQqbbh
Our deformable mirror based optimal PSF engineering is just out at #OSA_OL https://t.co/g2CxTzgKo7 Really like the uniform resolution at different z with DMO PSF!
OK, we originally only planned to do better multi-color microscopy imaging, but we are aware that maybe we can directly do spectroscopy in the same way, with AI!
https://t.co/c6pxiOS83P
5.20 (May 20) – "I love you". 520 (pinyin: wǔ'èrlíng) represents 我爱你 (pinyin: wǒ ài nǐ).
5.21 (May 21) – Happy birthday, ZJU!
Light field generated by an SLM (DOE) and imaged by a confocal microscope.
Machine Learning with Light. Our first work on optical design using AI!
Deep‐Learned Broadband Encoding Stochastic Filters for Computational Spectroscopic Instruments https://t.co/TliAEDuYY4