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Sam Jarman

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Indexed articles, last 90 days
3
Latest publication
Sep 29, 2026
Outlet visibility, for Physics World - Quantum Computing
Top 500K sites
Earliest in this view
Aug 6, 2026

Latest articles

  1. Article · Sep 29, 2026 · Sam Jarman

    DNA computer settles in thermodynamic equilibrium – Physics World (opens the original)

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    A DNA computer that calculates as it settles into thermal equilibrium has been unveiled in Ireland. Drawing together several earlier lines of research, Damien Woods and colleagues at Maynooth University created a DNA-based system that ran calculations far more quickly than they expected, and which could be easily implemented and reused with a relatively simple setup. Much like a living organism, a computer runs far from thermal equilibrium. It expends energy to maintain encoded bits of informati

  2. Article · Sep 8, 2026 · Sam Jarman

    Researchers shrink double-slit experiment to atomic scale – Physics World (opens the original)

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    For the first time, physicists in Japan have carried out an atomic-scale version of the double-slit experiment. Using an ultraprecise electron beam channelled along two adjacent columns of atoms in a crystal of silicon, Naoya Shibata and colleagues at the University of Tokyo observed clear interference fringes in electrons scattered by the atoms: fringes that persisted even at high temperature, thanks to correlations in the atoms’ thermal vibrations. The double-slit experiment is perhaps the mos

  3. Article · Aug 6, 2026 · Sam Jarman

    Topology affects the crumpling of growing elastic sheets – Physics World (opens the original)

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    A new mechanism governing the geometric shapes of growing elastic sheets has been identified by a trio of physicists in Israel. Through a combination of simulations and experiments, Eran Sharon and colleagues at the Hebrew University of Jerusalem showed that the dimpled patterns that form in a growing elastic object have topological origins. This mechanism is unrelated to geometric incompatibilities, which are known to dimple natural materials. The discovery could lead to a deeper understanding

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