Earlier quoted context omitted.
Yes, but a better clock means more precise measurements, means we can locate smaller masses to higher precision.
The problem is that the planet could be hollow and produce the same gravitational measurements on the surface and outside. It needs to be coupled with a model that introduces constraints for the inverse problem to be defined.
Atomic nucleus excited with laser: A breakthrough after decades
161–170 of 229 posts
Re: Atomic nucleus excited with laser: A breakthrough after decades
#162The measurement was already confirmed by a different group: https://arxiv.org/abs/2404.12311 This is important since impurities in the crystals used lead to all kinds of fluorescence that could be mistaken for a signal from the Thorium ions. Now two groups have seen exactly the same signal in different Thorium-doped crystals which is very covincing that they have found the actual nuclear transition.
Re: Atomic nucleus excited with laser: A breakthrough after decades
#163Earlier quoted context omitted.
Note: I will use the term "soccer" for the most common football of Europe, "Association football", and "football" for American football. And before anyone says that soccer fields should be called "pitches" not "fields" I will note that FIFA's "Laws of the Game" call it "field" 184 times. They only mention "pitch" in the glossary where the heading for "field" is "Field of play (pitch)". Generally you want to use Ameri…
> I will use the term "soccer" for the most common football of Europe, "Association football", and "football" for American football. I appreciate your valiant efforts but to my mind this is extra confusing because "soccer" is short for "association football" Time to rename American Football to "handegg" once and for all. Ok, ok, I'll settle for "American Rugby"
Re: Atomic nucleus excited with laser: A breakthrough after decades
#164When you stop and look at QCD in the big picture, it's sort of shocking how little we know - like, really, really know - about the internal structure of the proton, or even the nucleon! It's the curse of "probing" with massive energies. No one's a hundred percent certain of whether they're detecting something that's actually there - like there there - or whether they're looking at by-product of enormous collision ene…
1 - https://en.wikipedia.org/wiki/Tests_of_general_relativity
Re: Atomic nucleus excited with laser: A breakthrough after decades
#165Earlier quoted context omitted.
Nice to hear the octave relation used! "blue above visible blue" is a good name.. hmm, a little web tool to name these would be neat ;)
> "blue above visible blue" Good name for a rock band. Or some tv series.
Re: Atomic nucleus excited with laser: A breakthrough after decades
#166The measurement was already confirmed by a different group: https://arxiv.org/abs/2404.12311 This is important since impurities in the crystals used lead to all kinds of fluorescence that could be mistaken for a signal from the Thorium ions. Now two groups have seen exactly the same signal in different Thorium-doped crystals which is very covincing that they have found the actual nuclear transition.
I am always in awe of folks who come into the lab every day and work on figuring out the one thing. I envy that level of focus.
Re: Atomic nucleus excited with laser: A breakthrough after decades
#167Earlier quoted context omitted.
Classical there is used in the sense of “non relativistic”.
I thought relativistic quantum physics was not a thing (yet).
Re: Atomic nucleus excited with laser: A breakthrough after decades
#168Is there some direct application? Like using the excitation states of different atoms for storing information?
I >think< that this will enable more accurate magnetometers (see OPM-MEG and atomic clock magnetometers). Which can be used, among other things, for measuring neuronal activity.
Re: Atomic nucleus excited with laser: A breakthrough after decades
#169Earlier quoted context omitted.
148nm is on the lower end of UV-C. It's higher-energy than the furthest ultraviolet light that the sun produces (200nm). If it were produced artificially, it'd be heavily absorbed by the atmosphere to the point of near opacity. If the visible spectrum was an octave, where the "tone" of a color wrapped around from red back to blue the way G wraps to A, it'd be the blue one octave above visible blue.
Teeny nit, the sun produces light well into the x-rays (mostly from the corona though). You're probably talking about sunlight making it through the atmosphere.
Re: Atomic nucleus excited with laser: A breakthrough after decades
#170Earlier quoted context omitted.
148nm is on the lower end of UV-C. It's higher-energy than the furthest ultraviolet light that the sun produces (200nm). If it were produced artificially, it'd be heavily absorbed by the atmosphere to the point of near opacity. If the visible spectrum was an octave, where the "tone" of a color wrapped around from red back to blue the way G wraps to A, it'd be the blue one octave above visible blue.
Teeny nit, the sun produces light well into the x-rays (mostly from the corona though). You're probably talking about sunlight making it through the atmosphere.