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Published July 2024 | Version v1
Journal article

Fermi-Walker conformable connection and the evolution of the conformable magnetically driven particles

  • 1. Department of Mathematics, Muş Alparslan University, 49250 Muş(Turkey)
  • 2. Department of Administration, Muş Alparslan University, 49250 Muş (Turkey)

Description

We conduct a thorough exploration of the magnetic flows and physical dynamics exhibited by point charged particles in three-dimensional ordinary space. Our methodology is grounded in the application of conformable methods. Initially, we refine the general treatment to derive velocity and acceleration vector fields for point particles traversing conformable curves under the influence of distinct force fields. Subsequently, our inquiry extends into the realm of magnetism, where we investigate various types of dynamical magnetic curves that emerge from characterizing the movement of charged particles along conformable curves. In addition to this, we introduce the Fermi-Walker conformable derivative and provide an alternative representation for a unit-speed conformable curve by leveraging the Fermi-Walker connection. Throughout the entirety of the paper, we establish a meaningful correlation between the consistent motion of conformable charged particles and the trajectories dictated by specific external forces within the a-Frenet-Serret frame. The application of fractional calculus plays a pivotal role in our investigations, a facet we meticulously delve into in the paper. This work significantly contributes to an enhanced comprehension of magnetic phenomena and dynamics, offering valuable insights into the behavior of charged particles within conformable frameworks. (author)

Additional details

Identifiers

Publishing Information

Journal Title
Indian Journal of Physics (Online)
Journal Volume
98
Journal Issue
8
Journal Page Range
p. 2861-2872
ISSN
0974-9845

INIS

Country of Publication
India
Country of Input or Organization
India
INIS RN
55066530
Subject category
S75: CONDENSED MATTER PHYSICS, SUPERCONDUCTIVITY AND SUPERFLUIDITY;
Descriptors DEI
BAND THEORY; CHARGED PARTICLES; FERMI LEVEL; MAGNETIC FIELDS; MAGNETISM; MAGNETIZATION; PERMANENT MAGNETS
Descriptors DEC
ENERGY LEVELS; EQUIPMENT; MAGNETS