Scientists from our Department 'Living Matter Physics' developed a new model on organization of matter: non-reciprocal interactions play an important role in creating structures on a higher level - and eventually in the formation of life. @LivMatPhys
https://t.co/D0gp4mBLuv
Hot off the press: In a collaboration between Stefan Karpitschka's group and several people from @LivMatPhys, we show how filament motility, reversals at illumination boundaries and filament interactions work together to create emergent structures. @Lei_La_@RGolestanian@mpids
New paper w/ @MikeChatzittofi@RGolestanian! When the precision of a molecular machine is too good to be true, it could be that there is not a single machine but a whole team behind it. Stochastic thermodynamics helps us infer how big the team is, and how strongly it cooperates.
BREAKING NEWS
The Royal Swedish Academy of Sciences has decided to award the 2024 #NobelPrize in Physics to John J. Hopfield and Geoffrey E. Hinton “for foundational discoveries and inventions that enable machine learning with artificial neural networks.”
We are inviting applications for Postdoctoral Researcher positions in Active Matter and Statistical Physics @LivMatPhys@mpids. The research area will build on ongoing projects in the department, such as non-reciprocal active matter. Info on how to apply:
https://t.co/MIGWxY1nZ6
Living Matter Physics at the foot of Zugspitze: Great science and great hikes at this year’s @LivMatPhys retreat. Many thanks to everyone who contributed and special thanks to @ufs_forschung for the very interesting tour!
Applied mechanical forces can reduce the energy barrier in the reaction free energy. This and many other results in our nonlinear response theory of molecular machines with @RGolestanian and @AgudoCanalejo@LivMatPhys@mpids@ucl. Just Published in EPL.
https://t.co/l2IODaOUaD
‼️ PhD position available in my group in London, at @ucl@UCL_IPLS ‼️ Please RT and forward to potential interested candidates. Possible start dates are October 2024 or February 2025. More details in the picture below.
-A recent feature article in Europhysics News-
Non-reciprocal active-matter: a tale of “loving hate, brawling love” across the scales
https://t.co/kwRbuJDOLy
The article summarizes exciting research on the topic of non-reciprocal active matter, carried out across @LivMatPhys
We just launched our new YouTube series "Do you have a minute?" ⏲️ Upon knocking at their doors, various scientists from MPI-DS tell what they are currently working on. Curious?
👉https://t.co/fHp8Ytj2xB👈
As we show, this results in a strategy for the experimental inference of the chemical forces that drive the active swimming. This is a project from my PhD work with @RGolestanian and @AgudoCanalejo at @mpids@LivMatPhys .
A thermodynamically consistent description for stochastic swimmers far from equilibrium. Through an exact model, it is shown that external forces affect the motion not only by passive dragging but also by influencing the active swimming via the mechanochemical coupling.
The Quantum Vacuum behaves like a fluid, albeit with anomalous transport properties. Here is a recent example of this phenomenon
Phys. Rev. Lett. 132, 106903 (2024) - Scale-Dependent Heat Transport in Dissipative Media via Electromagnetic Fluctuations https://t.co/TsbxE1BylV
A carefully designed fluid-flow experiment provides the final explanation of Feynman’s sprinkler paradox by showing clear reverse rotation of a lawn sprinkler’s head when water flows back into it
Letter: https://t.co/YA9KQDRcUQ
Focus: https://t.co/RUYYGCmnzo
🚨PhD position available!🚨Are you interested in biological and nonequilibrium physics? Would you like to work with me @ucl, in the heart of London? Then apply below! (*but see also next tweet*)
Please retweet and share with potential applicants!
(1/2)
https://t.co/EsOqwudCeY
Our recent work on a generalized Lorentz Reciprocal Theorem for Fluids with Odd Viscosity. Great work led by Yuto Hosaka @LivMatPhys@mpids together with @AndrejVilfan
https://t.co/RfOflE6WB8
Chaos in a drop!? This and other amazing things can happen when nonreciprocity and motility act together in mixtures of quorum sensing active matter! Out in @PhysRevLett with Y.Duan, B.Mahault, @RGolestanian from @LivMatPhys@mpids https://t.co/8xFYY9cops
We have a number of open PhD positions in Active Matter and Statistical Physics @LivMatPhys [https://t.co/gtSswnxLkU] @mpids. You can find information on the positions and how to apply at the link below.
https://t.co/nvIBX7a8oL
The non-equilibrium dynamics of enzymes or molecular motors can be coupled through the surrounding medium which leads to synchronization. More information in our work with @RGolestanian and @AgudoCanalejo which is now out at @NJPhysics.
https://t.co/cznK993OxV