Comments on: (PDF) Identification of the Local Sources of Paramagnetic Noise in Superconducting Qubit Devices Fabricated on α − Al 2 O3 Substrates Using Density-Functional Calculations
https://russian.lifeboat.com/blog/2021/10/pdf-identification-of-the-local-sources-of-paramagnetic-noise-in-superconducting-qubit-devices-fabricated-on-%ce%b1-%e2%88%92-al-2-o-3-substrates-using-density-functional-calculations
Safeguarding HumanityTue, 12 Oct 2021 05:46:52 +0000
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By: tele
https://russian.lifeboat.com/blog/2021/10/pdf-identification-of-the-local-sources-of-paramagnetic-noise-in-superconducting-qubit-devices-fabricated-on-%ce%b1-%e2%88%92-al-2-o-3-substrates-using-density-functional-calculations#comment-437527
Tue, 12 Oct 2021 05:46:52 +0000https://lifeboat.com/blog/2021/10/pdf-identification-of-the-local-sources-of-paramagnetic-noise-in-superconducting-qubit-devices-fabricated-on-%ce%b1-%e2%88%92-al-2-o-3-substrates-using-density-functional-calculations#comment-437527In my experimentation with mag-lev and b field resesrch in a physical world have seen b-fjeld viberation related to mechanical sizes of disc and the mag dol. Present and variations on a 1/r2 distance from the axis. This certainly exhibits more drag than just accountable with a shorted turn. I suspect something to do with time shift and lattice structure under constant stress of C.F. acting on the field itself. Heavy inductor induced field will show low VLF resonance while disc is accelerated. Tramco R&D 1992
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