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@schwiftaierc

γούμπα λούμπα μεταγλώττιση

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calendar_today21-03-2025 00:53:12

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Phys.org (@physorg_com) 's Twitter Profile Photo

##QuantumUncertainty has been captured and controlled in real time using femtosecond light pulses, paving the way for advances in secure communication and ultrafast #QuantumOptics. doi.org/g95zc3 phys.org/news/2025-10-q…

Physics In History (@physinhistory) 's Twitter Profile Photo

It is impossible, and it has always been impossible, to grasp the meaning of what we nowadays call physics independently of its mathematical form. - Jacob Klein

It is impossible, and it has always been impossible, to grasp the meaning of what we nowadays call physics independently of its mathematical form.

- Jacob Klein
Physical Review B (@physrevb) 's Twitter Profile Photo

#PRBTopDownload: Variational scarring in open 2D #QuantumDots F. Chalangari, J. Keski-Rahkonen, S. Selinummi, and E. Räsänen Phys. Rev. B 112, 115137 – Published 17 September, 2025 ➡️ go.aps.org/3Vld3yh #EdSugg #OpenAccess #condmat #physics American Physical Society

#PRBTopDownload: Variational scarring in open 2D #QuantumDots

F. Chalangari, J. Keski-Rahkonen, S. Selinummi, and E. Räsänen
Phys. Rev. B 112, 115137 – Published 17 September, 2025

➡️ go.aps.org/3Vld3yh
#EdSugg #OpenAccess #condmat #physics <a href="/APSPhysics/">American Physical Society</a>
Nature Photonics (@naturephotonics) 's Twitter Profile Photo

New article online: Integrated electro-optic digital-to-analogue link for efficient computing and arbitrary waveform generation. go.nature.com/48WmP1G

New article online: Integrated electro-optic digital-to-analogue link for efficient computing and arbitrary waveform generation.

go.nature.com/48WmP1G
Science Magazine (@sciencemagazine) 's Twitter Profile Photo

In Science, researchers report the observation of dendritic nanotubes in brain tissue from mice and humans. The discovery suggests that the current understanding of the brain’s organization may be incomplete, overlooking a hidden layer of connectivity. Learn more in a new

In Science, researchers report the observation of dendritic nanotubes in brain tissue from mice and humans. The discovery suggests that the current understanding of the brain’s organization may be incomplete, overlooking a hidden layer of connectivity. 

Learn more in a new
News from Science (@newsfromscience) 's Twitter Profile Photo

After the Spanish conquest, horses transformed Native American tribes much earlier than historians thought. Learn more on #IndigenousPeoplesDay: scim.ag/4h78ku2

After the Spanish conquest, horses transformed Native American tribes much earlier than historians thought. 

Learn more on #IndigenousPeoplesDay: scim.ag/4h78ku2
The Principia (@theprincipiaa) 's Twitter Profile Photo

The Schwarzschild Metric is a solution to Einstein's field equations in general relativity, which describes the spacetime geometry around a spherically symmetric, non-rotating, and uncharged mass (like a star or a black hole).

The Schwarzschild Metric is a solution to Einstein's field equations in general relativity, which describes the spacetime geometry around a spherically symmetric, non-rotating, and uncharged mass (like a star or a black hole).
Phys.org (@physorg_com) 's Twitter Profile Photo

#Atomic-scale #QuantumInterference is now controllable using all-electrical methods, enabling rapid and precise manipulation of individual and coupled atomic spins for advanced quantum technologies. Nature Communications doi.org/g96vx3 phys.org/news/2025-10-a…

PRX Quantum (@prx_quantum) 's Twitter Profile Photo

A novel quantum strong-to-weak spontaneous symmetry-breaking transition is uncovered in open one-dimensional critical systems with symmetry-preserving decoherence, driven by Hamiltonian tuning and insensitive to system-environment coupling. go.aps.org/4otFGG5

A novel quantum strong-to-weak spontaneous symmetry-breaking transition is uncovered in open one-dimensional critical systems with symmetry-preserving decoherence, driven by Hamiltonian tuning and insensitive to system-environment coupling.

go.aps.org/4otFGG5