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  2. London moment - Wikipedia

    en.wikipedia.org/wiki/London_moment

    For example, those used in the Gravity Probe B experiment measured changes in gyroscope spin axis orientation to better than 0.5 milliarcseconds (1.4 × 10 −7 degrees) over a one-year period. [2] This is equivalent to an angular separation the width of a human hair viewed from 32 kilometers (20 miles) away.

  3. Chin-Sen Ting - Wikipedia

    en.wikipedia.org/wiki/Chin-Sen_Ting

    Chin-Sen Ting is a Chinese American physicist from Taiwan and an academic.He is a distinguished professor of physics at the University of Houston. [1]Through his research, Ting has explored condensed matter theories in semiconductors, magnetism, superconductivity, and correlated electron systems, focusing on solid state systems using methods like diagrammatic many body theory and Monte Carlo ...

  4. Artificial gravity - Wikipedia

    en.wikipedia.org/wiki/Artificial_gravity

    This apparent force acts at right angles to the motion and the rotation axis and tends to curve the motion in the opposite sense to the habitat's spin. If an astronaut inside a rotating artificial gravity environment moves towards or away from the axis of rotation, they will feel a force pushing them in or against the direction of spin.

  5. London penetration depth - Wikipedia

    en.wikipedia.org/wiki/London_penetration_depth

    The penetration depth is directly converted from the depolarization rate of muon spin in relation which σ(T) is proportional to λ 2 (T). The shape of σ(T) is different with the kind of superconducting energy gap in temperature, so that this immediately indicates the shape of energy gap and gives some clues about the origin of superconductivity.

  6. Meissner effect - Wikipedia

    en.wikipedia.org/wiki/Meissner_effect

    The experiment demonstrated for the first time that superconductors were more than just perfect conductors and provided a uniquely defining property of the superconductor state. The ability for the expulsion effect is determined by the nature of equilibrium formed by the neutralization within the unit cell of a superconductor.

  7. Ferromagnetic superconductor - Wikipedia

    en.wikipedia.org/wiki/Ferromagnetic_superconductor

    The nature of the superconducting state in ferromagnetic superconductors is currently under debate. Early investigations [5] studied the coexistence of conventional s-wave superconductivity with itinerant ferromagnetism. However, the scenario of spin-triplet pairing soon gained the upper hand.