Materials modeling | Professor @tudresden_de | Mountain Lover | Sofa Musician | Dad x 2 | he/him

Joined May 2011
22 Photos and videos
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"Imaging Science" at #Altana #Gallery includes our #hyperuniform structures! @open_fet @TUD_Science @dcmsdresden @cfaed_TUD
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New in @ScienceMagazine our work "Grain boundaries are Brownian ratchets"🤩 We dived very deep into grain boundary (GB) kinetics and emerged with refining our understanding of how interfaces in polycrystals migrate and can be controlled #ScienceResearch science.org/doi/10.1126/scie…
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To demonstrate this, we employed fully classical (molecular dynamics) and diffusive-timescale (phase field crystal - example below) atomistic simulations and interpreted the results using Markov-chain Monte Carlo. We then obtained confirmation by targeted experiments!
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This is the result of an amazing and fun ongoing collaboration between @tudresden_de @CityUHongKong @HKUniversity @UCIrvine And many thanks to @dfg_public for generous funding and support along the way! #ScienceResearch @dcmsdresden @DCIMdresden
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I was deeply honored by the nomination as Emerging Leader by the #MSMSE editorial board and now even more with the Award! Thanks for considering our work and in particular for appreciating the connections between #PFC and #Gradient #Elasticity!
Please join us in congratulating @MarcoSave - the winner of the MSMSE 2023 Emerging Leaders Award 🎉This award is in recognition of Marco's outstanding work on relating to gradient elasticity in Swift–Hohenberg and phase-field crystal models. Learn more👉 ow.ly/Cluu50SBjtJ
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Out in #PNAS our work on the emergence of #hyperuniformity (HU) in #active #fluids. We used #continuum #modeling and connected HU to #active #turbulence, with implications for physical and biological systems. ⬇️ pnas.org/doi/10.1073/pnas.23… @tudresden_de @TUD_Science @dcmsdresden

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Our results are relevant to #nonequilibrium #physics and the interpretation of #optimal strategies of #evasion and #foraging in biological contexts! Check out the findings and the discussions in the paper! (code & data available on #zenodo)
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The paper on the characterization of topology in #hyperuniform #patterns is now published in @PhysRevResearch 👇. Via #persistent #homology and #local #topological #neighborhoods, we unveiled key aspects for their detection, inverse design, and analysis/interpretation.
Persistent homology and topological statistics of hyperuniform point clouds, Marco Salvalaglio, Dominic J. Skinner, Jörn Dunkel, and Axel Voigt @MarcoSave @tudresden_de @NorthwesternU @MITMath #CondensedMatter #StatisticalPhysics go.aps.org/3JKKNiO
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It's a true honor to have been selected for the Richard von Mises Prize '24, and I am deeply grateful for the opportunity to present my research to the entire #GAMM community! It has been great!
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Marco Salvalaglio retweeted
In view of our long-lasting support for PlanS and collaboration with @cOAlitionS_OA, we would like to ask you to fill this #survey in order to collect data to improve the global publishing landscape aiming at a more sustainable, equitable and healthy publishing ecosystem.
As part of the consultation on our “Towards #ResponsiblePublishing” proposal, we're asking researchers worldwide to share their views on the scholarly publishing ecosystem and help us improve it. Survey open till 22 April: ➡️bit.ly/TRPResearcherSurvey 🙏 #OpenAccess #OpenResearch
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This year the 11th Multiscale Materials Modeling (MMM) conference is in Prague 🤩 (CZ), Sept. 22-27! Join us at Symposium (I.) on "#Multiscale and #coarse-#grained #models of #surfaces and #interfaces" (shorturl.at/mALXY - submission deadline 15.03). It will be great!

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Heading back from @uni_muenster after visiting the #CeNoS and the Institute of Theoretical Physics. Thanks for having me - what a place to study and discuss #pattern #formation!
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1/3 Our latest #research on fundamental mechanisms for #polycrystals (like most inorganic solids🪨) has been published in @PNASNews. We've uncovered that grain rotation in these materials follows from #disconnection flow during interface migration✨
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2/3 We devised a #continuum model for (multi-mode) interface disconnections (steps with dislocation character), reproducing atomistic simulation results. We also recast it in a simple phenomenological (Cahn-Taylor) model.
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3/3 More details in the published version (arXiv preprint available): tinyurl.com/4errfzsd . Kudos to the amazing work by Caihao Qiu and the great collaboration with Jian Han and David Srolovitz. And thanks to @dfg_public for funding! @TUDresden_DE @dcmsdresden @DCIMdresden

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We connected #gradient-#elasticity to the theory of order-disorder phase transition arxiv.org/abs/2312.08154 This follows from #Swift-#Hohenberg and #phase-#field #crystal models and completes the analysis of the elasticity naturally encoded therein! @TUD_Science @dcmsdresden

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Marco Salvalaglio retweeted
Paper-mills & garbage papers described in this @Nature piece are very negative consequences of the 'publish or perish' research evaluation system worldwide. @yacadeuro is committed to the importance of reforming/rethinking this system (@CoARAssessment). nature.com/articles/d41586-0…
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Marco Salvalaglio retweeted
Academic publishing is in deep trouble. We all know it: paper mills, thousands of Special Issues, retractions, skyrocketing APCs... What is going on? @danbrockington , @HansonM90 , @pagomba & me we have a preprint just out, with tons of data. A 🧵 arxiv.org/abs/2309.15884
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We developed a #mesoscale model for #elasticity and #defects in deformable crystalline sheets, like #graphene, and revealed intriguing insights into dislocation motion and interaction. Check out the preprint here: arxiv.org/abs/2309.11371 @DCIMdresden @dcmsdresden @TUD_Science

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