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The purpose of this paper is to derive the on and off-axes magnetic field of a solenoid with the use of a novel method. We have found a solution for the Biot-Savart law by considering the solenoid with a stationary electric current. The…

Accelerator Physics · Physics 2021-09-10 M. Behtouei , B. Spataro , L. Faillace , M. Carillo , M. Comelli , A. Variola , M. Migliorati

We comment on a recent paper regarding the derivation of the magnetic field components of a solenoid in analytical form by proposing a different and simpler method

Accelerator Physics · Physics 2021-04-26 G. Dattoli , E. Di Palma , E. Sabia

In this paper we present a solution to a fractional integral of the order 3/2 with the use of a novel method. The integral arises during solving the Biot-Savart equation to find the exact analytical solution for the magnetic field…

Classical Analysis and ODEs · Mathematics 2020-04-07 Mostafa Behtouei , Luigi Faillace , Luigi Palumbo , Bruno Spataro , Alessandro Variola , Mauro Migliorati

One common approach to computing the magnetic field produced by a filamentary current-carrying coil is to approximate the coil as a series of straight segments. The Biot-Savart field from each straight segment is known analytically.…

Computational Physics · Physics 2021-09-01 Nick McGreivy , Caoxiang Zhu , Lee Gunderson , Stuart R. Hudson

The Biot-Savart law is a well-known and powerful theoretical tool used to calculate magnetic fields due to currents in magnetostatics. We extend the range of applicability and the formal structure of the Biot-Savart law to electrostatics by…

Classical Physics · Physics 2009-11-06 Mario H. Oliveira , Jose A. Miranda

The method of retarded potentials is used to derive the Biot-Savart law, taking into account the correction that describes the chaotic motion of charged particles in rectilinear currents. Then this method is used for circular currents and…

Classical Physics · Physics 2021-07-16 Sergey G. Fedosin

This paper investigates the magnetic fields produced by a three-coil system, focusing on how different mesh resolutions affect the accuracy of the results. Using both the Poisson solver, as well as a numerical approach based on the solution…

In a region free of currents, magnetostatics can be described by the Laplace equation of a scalar magnetic potential, and one can apply the same methods commonly used in electrostatics. Here we show how to calculate the general vector field…

Atomic Physics · Physics 2017-11-08 Sérgio R. Muniz , M. Bhattacharya , Vanderlei S. Bagnato

For the extrapolation of magnetic fields into the solar corona from measurements taken in the photosphere (or chromosphere) force-free magnetic fields are typically used. This does not take into account that the lower layers of the solar…

Solar and Stellar Astrophysics · Physics 2020-01-08 Thomas Neukirch , Thomas Wiegelmann

We generalize a magnetogram-matching Biot-Savart law (BSL) from planar to spherical geometry. For a given coronal current density $\bf{J}$, this law determines the magnetic field $\tilde{\bf B}$ whose radial component vanishes at the…

Solar and Stellar Astrophysics · Physics 2025-06-23 V. S. Titov , C. Downs , T. Török , J. A. Linker , M. Prazak , J. A. Qiu

In fusion reactor design, steels under consideration for the blanket are ferromagnetic, so the steel's effect on the plasma physics must be examined. For efficient calculation of these fields, we can exploit the fact that the magnetic…

Plasma Physics · Physics 2026-01-13 Matt Landreman , Humberto Torreblanca , Antoine Cerfon

The Dirac equation for an electron in two spatial dimensions in the Coulomb and homogeneous magnetic fields is discussed. For weak magnetic fields, the approximate energy values are obtained by semiclassical method. In the case with strong…

Quantum Physics · Physics 2009-11-06 Choon-Lin Ho , V. R. Khalilov

For magnetic field calculations, cylindrical permanent magnets are often approximated as ideal, azimuthally symmetric solenoids. Despite the frequent usage of this approximation, research papers demonstrating the validity and limitations of…

Instrumentation and Detectors · Physics 2022-07-21 David Shulman

Both wire-wound solenoids and cylindrical magnets can be approximately modeled as ideal, azimuthally symmetric solenoids. We present here an exact solution for the magnetic field of an ideal solenoid in an especially easy to use form. The…

Classical Physics · Physics 2015-05-14 Norman Derby , Stanislaw Olbert

A novel mathematical approach has been developed to complete the inversion of the Biot-Savart law in one- and two-dimensional cases from measurements of the perpendicular component of the magnetic field using the well-developed…

Superconductivity · Physics 2018-07-19 J. W. Zuber , F. S. Wells , S. A. Fedoseev , T. H. Johansen , A. B. Rosenfeld , A. V. Pan

This contribution documents the methods used in the BioSaw code. The code is inteded to be a flexible tool for calculating magnetic fields due to coils in magnetic confinement fusion devices. It assumes the conductors are infinitesimally…

Plasma Physics · Physics 2015-11-06 Simppa Äkäslompolo , Tuomas Koskela , Taina Kurki-Suonio

The evaluation of the magnetic field inside and outside a uniform current density infinite solenoid of uniform cross-section is an elementary problem in classical electrodynamics that all undergraduate Physics students study. Symmetry…

General Physics · Physics 2016-11-08 Aritro Pathak

This work introduces a systematic method for identifying analytical and semi-analytical solutions of force-free magnetic fields with plane-parallel and axial symmetry. The method of separation of variables is used, allowing the…

High Energy Astrophysical Phenomena · Physics 2025-01-28 Konstantinos N. Gourgouliatos

We consider the Dirac equation in the magnetic-solenoid field (the field of a solenoid and a collinear uniform magnetic field). For the case of Aharonov-Bohm solenoid, we construct self-adjoint extensions of the Dirac Hamiltonian using von…

High Energy Physics - Theory · Physics 2015-06-26 S. P. Gavrilov , D. M. Gitman , A. A. Smirnov

In the introductory courses on electromagnetism, the Biot-Savart law is generally explained by a simple example to find the magnetic field created at any point in space by a small wire element that carries a current. The simplest system…

Physics Education · Physics 2021-05-19 Jorge Enrique García-Farieta , Alejandro Hurtado Márquez
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