1. MC Hübl and CP Goodrich. Entropic size control of self-assembled filaments. Phys. Rev. Research 8, L012054 (2026).
    [publisher] [arXiv]
  2. MC Hübl and CP Goodrich. Simultaneous optimization of assembly time and yield in programmable self-assembly. J. Chem. Phys. 164, 084904 (2026).
    [publisher] [arXiv] (editor’s pick & cover image)
  3. MC Hübl, TE Videbæk, D Hayakawa, WB Rogers, and CP Goodrich. A polyhedral structure controls programmable self-assembly. Nature Physics 22 (2), 294-301 (2026).
    [publisher] [arXiv] (commentary by Martin Lenz) (derStandard (german)) (ISTA news story)
  4. S Shi, MC Hübl, G Grosjean, CP Goodrich, and S Waitukaitis. Electrostatics overcome acoustic collapse to assemble, adapt, and activate levitated matter. Proc. Natl. Acad. Sci. USA 122, e2516865122 (2025).
    [publisher] [arXiv] (physics world) (ISTA news story) (cover image)
  5. MC Hübl and CP Goodrich. Accessing semiaddressable self-assembly with efficient structure enumeration. Phys. Rev. Lett. 134, 058204 (2025).
    [publisher] [arXiv]
  6. B Hartl, MC Hübl, G Kahl, and A Zöttl. Microswimmers learning chemotaxis with genetic algorithms. Proc. Natl. Acad. Sci. USA 118, e2019683118 (2021).
    [publisher] [arXiv] (die Presse (german)) (TU Wien news story)