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  1. A trick for taming terahertz transmissions

    Osaka University researchers have invented a wireless communication receiver that can operate in the terahertz frequency band. By increasing the sensitivity ...

    存在位置 Research Info / 2019
  2. A close up on the real world — atomic migration under ambient conditions

    Osaka University researchers have reported an environmental transmission electron microscopy technique that has allowed in situ visualization of the atomic ...

    存在位置 Research Info / 2019
  3. Nanocatalyst makes heavy work of formic acid

    Osaka University researchers have reported a nanocatalyst that is able to produce hydrogen isotope compounds D2 and HD via the heterogeneous dehydrogenation of ...

    存在位置 Research Info / 2019
  4. Terahertz waves reveal hidden processes in ultrafast artificial photosynthesis

    Osaka University researchers have succeeded in observing charge transfer and intermolecular interactions in ultrafast artificial photosynthesis. With ...

    存在位置 Research Info / 2019
  5. Travelling Towards a Quantum Internet at Light Speed

    Osaka University researchers demonstrated a new method for transmitting quantum information over long distances by using circularly polarized light to flip the ...

    存在位置 Research Info / 2019
  6. Balancing Beams: Multiple Laser Beamlets Show Better Electron and Ion Acceleration

    Researchers at Osaka University show how creating interference patterns with four laser beamlets improves the efficiency of energy transfer when accelerating ...

    存在位置 Research Info / 2019
  7. Researchers Put a New Spin on Molecular Oxygen

    Reactive molecular oxygen singlets have a multitude of uses in chemistry and medicine, but they are less abundant than non-reactive oxygen triplets. A ...

    存在位置 Research Info / 2019
  8. Resistance Is Utile: Magnetite Nanowires with Sharp Insulating Transition

    A Japanese research team led by Osaka University produced Fe3O4 nanowires on 10-nm length scales by deposition on an MgO substrate. When cooled to 110 K, the ...

    存在位置 Research Info / 2019
  9. Settling the Debate: Solving the Electronic Surface States of Samarium Hexaboride

    Researchers at Osaka University show that samarium hexaboride is a topological insulator, which allows electrons to flow only along its exterior surface. ...

    存在位置 Research Info / 2019
  10. Applying pressure is way toward generating more electricity from waste heat

    The ability of a thermoelectric material to produce electricity from waste heat was improved more than twofold by a Japan-based research team led by Osaka ...

    存在位置 Research Info / 2019
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