gradient magnetic layers

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US Patent for Gradient coil with external direct cooling The gradient coil assembly is designed to address a neck-shoulder clearance problem by configuring the coil holder housing with a cylindrical portion modified with a slanted surface and positioning current return elements of the coil pattern at the slanted surface, while positioning the active electrical elements on the cylindrical surface, thus eliminating influence of an undesired magnetic

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Magnet apparatus for generating high gradient magnetic field

A magnet apparatus for generating a high gradient and/or high strength magnetic field, comprises: two main permanent magnets 2, 4 located side-by-side with oppositely oriented magnetic field polarities and end surfaces of opposite polarities next to one another, wherein the magnetic anisotropy of the magnets 2, 4 exceeds the magnetic induction of the material of the magnets 2, 4; and at least

(PDF) Vertical magnetic field gradient in the photospheric V ertical magnetic field gradient in the photospheric layers of sunspots Jayant Joshi 1, 2, Andreas Lagg 1, Johann Hirzberger 1, Sami K. Solanki 1, 3, and Sanjiv K. T iwari 1, 4[1610.00500] Vertical magnetic field gradient in the 10/3/2016· Abstract: We investigate the vertical gradient of the magnetic field of sunspots in the photospheric layer. Independent observations were obtained with the SOT/SP onboard the Hinode spacecraft and with the TIP-2 mounted at the VTT. We apply state-of-the-art inversion techniques to both data sets to retrieve the magnetic field and the corresponding vertical gradient.

Bilayer skyrmion dynamics on a magnetic anisotropy gradient4/8/2019· The bilayer was constructed by having two magnetic layers separated by a single non-magnetic layer of 0.4 nm thickness which represents a material such as Ru or Ir to antiferromagnetically couple the adjacent ferromagnetic layers. The gradient magnetic anisotropy is formed by varying the values of magnetic anisotropy cell by cell along the slope.

Gradient of zinc content in core–shell zinc ferrite A broad spectrum of applications of magnetic nanoparticles leads to the need for the precise tuning of their magnetic properties. In this study, a series of magnetite and zinc-ferrite nanoparticles were successfully prepared by modified high-temperature synthesis in

Gradient meter with thin magnetic layer - Commissariat, L 10/27/1987· The known thin magnetic layers, utilized in the gradient meter of the present invention, are of the type of those which are shown in FIG. 1 and comprise essentially on a cylindrical support 1 a magnetic layer 2 having the form of a cylinder of revolution on axis Z and of thickness e. This thin layer 2 is anisotropic, that is, that is possesses

Layering of magnetic nanoparticles at amorphous magnetic

Layering of magnetic nanoparticles at amorphous magnetic templates with perpendicular anisotropy†. Apurve Saini a, Julie A. Borchers b, Sebastian George a, Brian B. Maranville b, Kathryn L. Krycka b, Joseph A. Dura b, Katharina Theis-Bröhl c and Max Wolff * a a Department for Physics and Astronomy, Uppsala University, Lägerhyddsvägen 1, 752 37 Uppsala, Sweden.Vertical magnetic field gradient in the photospheric Aims: We investigate the vertical gradient of the magnetic field of sunspots in the photospheric layer. Methods: Independent observations were obtained with the Solar Optical Telescope/Spectropolarimeter (SOT/SP) on board the Hinode spacecraft and with the Tenrife Infrared Polarimeter-2 (TIP-2) mounted at the German Vacuum Tower Telescope (VTT).MASURA "Magnetic Gradient" collection7/16/2016· In contrast to the standard diagonal position of the magnet, this time I held its flat side near the nail plate close to the cuticle. As a result, there is a kind of gradient: dark particles are concentrated at the bottom of the nail plate, followed by a bright strip of magnetic Gradient Structure Design of Flexible Waterborne In this study, a new strategy is employed to provide flexible waterborne polyurethane composite films with an ultra-efficient electromagnetic shielding effectiveness (EMI SE) and low reflection by constructing gradient shielding layers with a magnetic ferro/ferric oxide deposited on reduced graphene oxide ([email protected] 3 O 4) and silver

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