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Physical Review Letters

Physical Review Letters

Peer-reviewed journalWikipedia

Search complete. 16 mentions across 16 episodes found for "Physical Review Letters".

Sep 26, 2026

speaker_3HOST
3:28
Yeah.
speaker_3HOST
3:29
It was recently published in Physical Review Letters, and it's finally giving us our clearest view ever of how these mysterious particles actually behave inside atomic nuclei.
speaker_4HOST
3:39
Okay, let's unpack this 'cause I have a bone to pick with the standard science curriculum.
speaker_3HOST
3:43
I thought you might.
Stuart GaryHOST
9:48
[upbeat music] Scientists have discovered a new way to create a quark-gluon plasma, the first matter to form in our universe.
Stuart GaryHOST
10:00
The findings, reported in the journal Physical Review Letters, opens a new window on the first microseconds after the Big Bang 13.8 billion years ago.
Stuart GaryHOST
10:09
What happened in those first moments of the universe before the building blocks of life and the world as we know it came into existence? Physicists at CERN, the European Organization for Nuclear Research, are trying to answer this question by recreating some of the extreme conditions that prevailed in the universe at the very beginning of time.
Stuart GaryHOST
10:28
Now, researchers from the Niels Bohr Institute, together with colleagues from the ALICE collaboration at CERN's Large Hadron Collider, the world's biggest atom smasher, have come one step closer to understanding those conditions.
Stuart GaryHOST
9:54
Scientists have discovered a new way to create a glycogluon plasma, the first matter to form in our universe.
Stuart GaryHOST
10:00
The findings, reported in the journal Physical Review Letters, opens a new window on the first microseconds after the Big Bang 13.8 billion years ago.
Stuart GaryHOST
10:09
What happened in those first moments of the universe, before the building blocks of life and the world as we know it came into existence? Physicists at CERN, the European Organization for Nuclear Research, are trying to answer this question by recreating some of the extreme conditions that prevailed in the universe at the very beginning of time.
Stuart GaryHOST
10:28
Now researchers from the Niels Bohr Institute, together with colleagues from the ALICE collaboration at CERN's Large Hadron Collider, the world's biggest atom smasher, have come one step closer to understanding those conditions.
speaker_3HOST
3:09
It is.
speaker_3HOST
3:09
So today we are exploring this paradigm-shifting breakthrough that was just published in Physical Review Letters.
speaker_3HOST
3:16
We are going to unpack how a leading candidate for dark matter, uh, the hypothetical dark photon-
speaker_2HOST
3:22
Which is a huge topic on its own
speaker_4HOST
33:04
Two physicists, Savas Dimopoulos, one of the original ADD authors, and Greg Landsberg, decided to take this beautiful theory and do the brutal real-world math.
speaker_5HOST
33:15
They published a paper in Physical Review Letters with a title that would have sounded like pure science fiction just three years earlier.
speaker_5HOST
33:22
Black holes at the LHC.
speaker_4HOST
33:24
black holes at the LHC.
speaker_1HOST
10:28
So the box gets opened.
speaker_1HOST
10:29
The unblinded results from the XENON detector were published in August 2026 in Physical Review Letters, and the data showed, well, no unexplained signals, nothing beyond the predicted background model, no axion-like particles jumping out of the low energy ranges.
speaker_1HOST
10:45
So what does this all mean?
speaker_2HOST
10:47
Well, if we connect this to the bigger picture, a robust, highly sensitive null result like this is a massive scientific win.
speaker_1HOST
8:14
Yeah.
speaker_1HOST
8:14
And this was published on August sixth, twenty twenty-six in Physical Review Letters.
speaker_2HOST
8:18
A very prestigious journal.
speaker_1HOST
8:20
Definitely.

Unknown podcast

Could Your Entire Life Be Happening Inside a Simulation?

Sep 10 · 1 Mention

Ben CarterHOST
5:21
At MIT, physicist Seth Lloyd asked a different question.
Ben CarterHOST
5:24
How much information can physical systems process? In work developed from 1999 and published in Physical Review Letters in 2002, Lloyd derived limits from known physics.
Ben CarterHOST
5:36
Matter and energy do not process unlimited information.
Ben CarterHOST
5:40
Computation requires physical resources, and those resources are constrained by quantities such as energy, entropy, time, and the speed at which signals can propagate.
Stuart GaryHOST
2:27
It would also suggest a specific type of interaction between WIMPs and ordinary matter beyond the simplest model.
Stuart GaryHOST
2:34
The findings have been reported on the pre-press physics website archive.org and in the journal Physical Review Letters.
Stuart GaryHOST
2:41
For the better part of a century, people have been trying to understand dark matter.
Stuart GaryHOST
2:46
It's important because it makes up roughly eighty-five percent of all the mass in the universe.
Stuart GaryHOST
1:25
It would also suggest a specific type of interaction between WIMPs and ordinary matter beyond the simplest model.
Stuart GaryHOST
1:32
The findings have been reported on the pre-press physics website archive.org and in the journal Physical Review Letters.
Stuart GaryHOST
1:40
For the better part of a century, people have been trying to understand dark matter.
Stuart GaryHOST
1:45
It's important because it makes up roughly 85% of all the mass in the universe.

6 more episodes mention Physical Review Letters.

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