10 research outputs found

    Quantum thermodynamics at critical points during melting and solidification processes

    Full text link
    We systematically explore and show the existence of finite-temperature continuous quantum phase transition (CTQPT) at a critical point, namely, during solidification or melting such that the first-order thermal phase transition is a special case within CTQPT. Infact, CTQPT is related to chemical reaction where quantum fluctuation (due to wavefunction transformation) is caused by thermal energy and it can occur maximally for temperatures much higher than zero Kelvin. To extract the quantity related to CTQPT, we use the ionization energy theory and the energy-level spacing renormalization group method to derive the energy-level spacing entropy, renormalized Bose-Einstein distribution and the time-dependent specific heat capacity. This work unambiguously shows that the quantum phase transition applies for any finite temperatures.Comment: To be published in Indian Journal of Physics (Kolkata

    CMS : the TriDAS Project Technical Design Report; v.1, the Trigger Systems

    No full text
    CM

    CMS TriDAS project: Technical Design Report, Volume 1: The Trigger Systems

    No full text

    Physico-chemical models of the internal structure of partially differentiated Titan

    No full text

    Subsurface Water Oceans on Icy Satellites: Chemical Composition and Exchange Processes

    No full text
    corecore