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  1. Instant Turn-over of Magnetism by Gyro Motion of Relativistic Electrons

    A team of researchers led by Osaka University investigated the mechanism of polarity reverse of magnetic fields and its growth from a weak seed field in a ...

    Located in Research Info / 2022
  2. Physicists Achieve Rapid Magnetic Switching with Lasers

    An Osaka University-led research group use an advanced synchrotron measurement system to probe how laser pulses affect the magnetism of ferrimagnetic materials ...

    Located in Research Info / 2017
  3. Mind your speed: A magnetic brake on proton acceleration

    An international research team led by Osaka University studied high-energy protons emitted from laser-bombarded solids. Recent studies found that higher laser ...

    Located in Research Info / 2018
  4. Macroscopic phenomena governed by microscopic physics

    Researchers at Osaka University observe a magnetic reconnection driven by electron dynamics in laser-produced plasmas. Magnetic reconnections are often ...

    Located in Research Info / 2018
  5. Novel technology reduces energy consumption of MRAM and AI hardware

    Researchers from Osaka University, in collaboration with the National Institute of Advanced Industrial Science and Technology (AIST) and Grenoble Alpes ...

    Located in Research Info / 2018
  6. Computational algorithm to reduce electromagnetic noise in electronic circuits developed

    Two researchers at Osaka University developed an algorithm for numerical calculation of EM noise (interference) in electric circuits. This algorithm is for ...

    Located in Research Info / 2019
  7. 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 ...

    Located in Research Info / 2019
  8. Elucidation of cause of electromagnetic noise allows for EM noise-less electric circuits

    Researchers from Osaka University developed equations for quantifying electromagnetic interference (EM noise) and elucidated its origin, allowing for the best ...

    Located in Research Info / 2019
  9. 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 ...

    Located in Research Info / 2019
  10. (Noise-) Less is More

    Researchers from Osaka University developed a high precision 3D circuit simulator in the time-domain for quantifying EM noise and elucidated its origin, ...

    Located in Research Info / 2019
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