What are some of the notable FQX awardees and their research projects?

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Hey GARRETT!
 
Anthony Garrett Lisi is on the list!

AND other familiar names

Louis Crane (of the Barrett-Crane spinfoam model) also Kea's co-author
Fotini Markopoulou
Brian Greene (topic does not seem to be string. what is he up to?)
Olaf Dreyer (ex-Perimeter now-Imperial)
Chris Isham (topos, Kea will like that)
Jorge Pullin (we've discussed Gambini-Pullin papers including resolution of BH puzzle using real quantum clocks)
Xiao-Gang Wen (we had a thread touching on his work)

SOME names are so famous I won't even bother to mention them.

We've had something about Abraham Loeb----inventivie smart observationalist. original ideas for testing ideas.
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I see I beat Peter Woit, but only by about 10 minutes. I posted at 7:09 PM (eastern) and he at 7:21 PM.
thanks to Mixed States for the reminder.
 
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Well, anyway, good luck with the research project Garrett!
I hope some of the next year or two can be spent at a hot research location where your brains can be stimulating other people and you can be buffeted around a bit by other people's thinking too:smile:
but whatever or however you go, my feeling is that it's going to work!

Peter Woit has a some discussion going at N.E.W.
http://www.math.columbia.edu/~woit/wordpress/?p=436#comments

Xiao-Gang Wen, another of the Foundational awardees, showed up and commented at N.E.W., as did Garrett, and also Anthony Aguirre who is an assistant director or something at Foundational.
Also Peter has some more links to discussions elsewhere of FQX and Templeton.

personally I think their committee did a remarkably good job. I like the spread of academic institutions and research topics. You really can't tell how a committee did unless you know the range of proposals they had to pick from, and this was the first cycle of grant-applications, so who knows. But it certainly looks OK to me what they came up with!
 
https://arxiv.org/pdf/2503.09804 From the abstract: ... Our derivation uses both EE and the Newtonian approximation of EE in Part I, to describe semi-classically in Part II the advection of DM, created at the level of the universe, into galaxies and clusters thereof. This advection happens proportional with their own classically generated gravitational field g, due to self-interaction of the gravitational field. It is based on the universal formula ρD =λgg′2 for the densityρ D of DM...
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