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Physicists Observe Incredible 'Quantum Tornados' Formed From Ultra-Cold Atoms
https://www.sciencealert.com ^ | January 6, 2022 | TESSA KOUMOUNDOUROS

Posted on 01/06/2022 10:32:24 AM PST by Red Badger

Particles forming swirling, tornado-like structures. (Mukherjee et al, Nature, 2022

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Scientists have observed a stunning demonstration of classic physics giving way to quantum behavior, manipulating a fluid of ultra-cold sodium atoms into a distinct tornado-like formation.

Particles behave differently on the quantum level, in part because at this point their interactions with each other hold more power over them than the energy from their movement.

Then, of course, there's the mind-boggling fact that quantum particles don't exactly have a certain fixed location like you or I, which influences how they interact.

By cooling particles down to as close to absolute zero as possible and eliminating other interference, physicists can observe what happens when these strange interactions take hold, as a team from MIT has just done.

"It's a breakthrough to be able to see these quantum effects directly," says MIT physicist Martin Zwierlein.

The team trapped and spun a cloud of around 1 million sodium atoms using lasers and electromagnets. In previous research physicists demonstrated this would spin the cloud into a long needle-like structure, a Bose-Einstein condensate, where the gas starts to behave like a single entity with shared properties.

"In a classical fluid, like cigarette smoke, it would just keep getting thinner," says Zwierlein. "But in the quantum world, a fluid reaches a limit to how thin it can get."

In the new study, MIT physicist Biswaroop Mukherjee and colleagues pushed beyond this stage, capturing a series of absorption images that reveal what happens after atoms' have switched from being predominantly governed by classical to quantum physics.

The image below highlights the densities of ultra-cold atoms across microseconds.

A yellow-red straight line followed by a wriggle that breaks up into a series of galaxy like swirls. (Mukherjee et al, Nature, 2022)

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The atom cloud evolved from the needle-like condensate (left), passed through snake-shaped instability (center), and formed miniscule tornadoes (right).

There are even tiny dark spots between the neighboring crystals (see the 'x' marks below) where vortexes of counterflow occur – just as we see in complex weather systems (think of the roiling adjoining storms on Jupiter).

(Mukherjee et al, Nature, 2022)

=========================================================================

"Here, we have quantum weather: The fluid, just from its quantum instabilities, fragments into this crystalline structure of smaller clouds and vortices," explains Zwierlein.

"This evolution connects to the idea of how a butterfly in China can create a storm [in the US], due to instabilities that set off turbulence. Even in classical physics, this gives rise to intriguing pattern formation, like clouds wrapping around the Earth in beautiful spiral motions. And now we can study this in the quantum world."

The team controlled the system so nothing else was exerting a force on the atomic subjects. This meant only the interactions of the particles themselves and their rotation was at play. Their resulting behavior displayed supersolid properties, somewhat like what electrons produce in the form of Wigner crystals.

While traditional crystal solids are usually composed of atoms arranged in a stationary, repeating grid structure, these structures continue to fluctuate but remain within a definable pattern – like a liquid pretending to be a solid by holding and flowing through a fixed shape.

The team essentially made the atoms to behave like they're electrons in a magnetic field. Using atoms in this way makes the resulting quantum phenomena easier to both manipulate and observe – opening the way for even more discoveries about this mind-bending world.

"We can visualize what individual atoms are doing, and see if they obey the same quantum mechanical physics," says Zwierlein.

This research was published in Nature.


TOPICS: Astronomy; Education; History; Science; Weird Stuff
KEYWORDS: astronomy; physics; science; stringtheory

1 posted on 01/06/2022 10:32:24 AM PST by Red Badger
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To: SunkenCiv; Kevmo; Wonder Warthog; SuperLuminal

Quantum Ping!.............


2 posted on 01/06/2022 10:33:19 AM PST by Red Badger (Homeless veterans camp in the streets while illegal aliens are put up in hotels.....................)
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To: Red Badger
Is this a quantum leap?


3 posted on 01/06/2022 10:36:08 AM PST by Magnum44 (...against all enemies, foreign and domestic...)
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To: Red Badger

Just for the sake of a sh!tposting theological debate... does God know exactly were every quantum particle is?


4 posted on 01/06/2022 10:42:06 AM PST by Demiurge2 (Define your terms!)
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To: Demiurge2

No, but He knows how fast they are going...............


5 posted on 01/06/2022 10:43:20 AM PST by Red Badger (Homeless veterans camp in the streets while illegal aliens are put up in hotels.....................)
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To: Red Badger

The team controlled the system so nothing else was exerting a force on the atomic subjects.

Cancel gravity did they?

Now that would be progress!


6 posted on 01/06/2022 10:47:35 AM PST by tet68 ( " We would not die in that man's company, that fears his fellowship to die with us...." Henry V.)
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To: tet68

“Cancel gravity did they?”

Maybe they did the experiment on board an airplane diving at freefall velocity.


7 posted on 01/06/2022 11:02:55 AM PST by Boogieman
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To: Red Badger
When a superfluid (like liquid helium in the superfluid state) is rotated, it doesn't rotate as a mass, but instead breaks up into tiny vortices that are arranged in a periodic pattern:

This happens because of the wave nature of matter at the quantum scale. In "rigid rotation," the various atoms that make up the object move with different velocities; those near the axis of rotation move more slowly than do those far from the rotational axis. As particles move more quickly, their de Broglie wavelength decreases; the particles near the axis of rotation have a longer de Broglie wavelength than the particles further away.

Because a superfluid behaves like a single large quantum-mechanical system, the de Broglie waves that make up the various particles must all stay in phase; the only way for this to happen if the container is rotating is for the superfluid to break up into these tiny quantum vortices.

8 posted on 01/06/2022 12:57:19 PM PST by Steely Tom ([Voter Fraud] == [Civil War])
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To: Steely Tom

At the quantum level, matter stops mattering....................


9 posted on 01/06/2022 1:01:06 PM PST by Red Badger (Homeless veterans camp in the streets while illegal aliens are put up in hotels.....................)
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To: Red Badger
At the quantum level, matter stops mattering....................

And as my (then six-year-old) daughter said: "Numbers can't be numbered."

10 posted on 01/06/2022 1:43:39 PM PST by Steely Tom ([Voter Fraud] == [Civil War])
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To: Red Badger

Thanks for the ping. From the article:

In previous research physicists demonstrated this would spin the cloud into a long needle-like structure, a Bose-Einstein condensate, where the gas starts to behave like a single entity with shared properties.

A ‘long needle-like BEC’ theory aligns with my V1DLLBEC LENR theory.

Perhaps it is time to update my

Vibrating 1 Dimensional Luttinger Liquid Bose-Einstein Condensate Theory [V1DLLBEC]
https://www.lenr-forum.com/forum/thread/5859-1-dimensional-lenr-theories/

It would be more like a 1 Dimensional Linear Luttinger Liquid Vortex Bose-Einstein Condensate [1DLLLVBEC] or maybe [1DL^3VBEC] or pronounce it [ONEDulllVoBEC].


11 posted on 01/07/2022 11:11:50 AM PST by Kevmo (I’m immune from Covid since I don’t watch TV.🤗)
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To: Red Badger; 6SJ7; AdmSmith; AFPhys; Arkinsaw; allmost; aristotleman; autumnraine; bajabaja; ...
Thanks Red Badger.


· List topics · post a topic · subscribe · Google ·

12 posted on 01/08/2022 9:12:45 AM PST by SunkenCiv (Imagine an imaginary menagerie manager imagining managing an imaginary menagerie.)
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