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#luckyus — Public Fediverse posts

Live and recent posts from across the Fediverse tagged #luckyus, aggregated by home.social.

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  1. Just had a large water oak fall down behind my house. The top of the tree (in the photo) hit the house and window but I don’t think that there is any major damage. #HurricaneCoverage #Idalia #LuckyUs

  2. Just had a large water oak fall down behind my house. The top of the tree (in the photo) hit the house and window but I don’t think that there is any major damage. #HurricaneCoverage #Idalia #LuckyUs

  3. Just had a large water oak fall down behind my house. The top of the tree (in the photo) hit the house and window but I don’t think that there is any major damage. #HurricaneCoverage #Idalia #LuckyUs

  4. Just had a large water oak fall down behind my house. The top of the tree (in the photo) hit the house and window but I don’t think that there is any major damage. #HurricaneCoverage #Idalia #LuckyUs

  5. Presenting: quantum microscopy by coincidence!
    #luckyus
    nature.com/articles/s41467-023
    >The authors present a method for super-resolution quantum microscopy at the Heisenberg limit by using pairs of entangled photons with balanced pathlengths. They improve the spatial resolution, imaging speed, and contrast-to-noise ratio in practice while providing a theoretical interpretation of the super-resolution feature.

  6. Presenting: quantum microscopy by coincidence!
    #luckyus
    nature.com/articles/s41467-023
    >The authors present a method for super-resolution quantum microscopy at the Heisenberg limit by using pairs of entangled photons with balanced pathlengths. They improve the spatial resolution, imaging speed, and contrast-to-noise ratio in practice while providing a theoretical interpretation of the super-resolution feature.

  7. Presenting: quantum microscopy by coincidence!
    #luckyus
    nature.com/articles/s41467-023
    >The authors present a method for super-resolution quantum microscopy at the Heisenberg limit by using pairs of entangled photons with balanced pathlengths. They improve the spatial resolution, imaging speed, and contrast-to-noise ratio in practice while providing a theoretical interpretation of the super-resolution feature.

  8. Presenting: quantum microscopy by coincidence!
    #luckyus
    nature.com/articles/s41467-023
    >The authors present a method for super-resolution quantum microscopy at the Heisenberg limit by using pairs of entangled photons with balanced pathlengths. They improve the spatial resolution, imaging speed, and contrast-to-noise ratio in practice while providing a theoretical interpretation of the super-resolution feature.

  9. Presenting: quantum microscopy by coincidence!
    #luckyus
    nature.com/articles/s41467-023
    >The authors present a method for super-resolution quantum microscopy at the Heisenberg limit by using pairs of entangled photons with balanced pathlengths. They improve the spatial resolution, imaging speed, and contrast-to-noise ratio in practice while providing a theoretical interpretation of the super-resolution feature.

  10. @Alan

    The fabulous (or is it fabulating, he IS a famous writer...) A L Katz is here on Mastodon!

    #Writers #WritersOfMastodon #LuckyUs

  11. @Alan

    The fabulous (or is it fabulating, he IS a famous writer...) A L Katz is here on Mastodon!

  12. @Alan

    The fabulous (or is it fabulating, he IS a famous writer...) A L Katz is here on Mastodon!

    #Writers #WritersOfMastodon #LuckyUs