Energy distribution of an ion cloud in a quadrupole Penning Trap
Keywords:
Quadrupole Penning trap, Probability of energy distribution function, Probability density of energy distribution functionAbstract
Ions are confined in Penning trap by the combination of electric field and magnetic field, as the electric field confines ions in the axial direction through an electric potential minimum and the magnetic field applied along the axis of the trap confines the ions in the radial direction. In the high temperature limit Coulomb interaction of ions can be neglected and the total energy is due to the electrostatic potential energy of the charge of ions and kinetic energy due to thermal energy. However, in the low temperature limit the trapping potential created by the dc voltage applied between the end cap and ring electrodes is cancelled by Coulomb interaction of ions and the total energy is mainly kinetic energy of ions. The probability density of energy distribution of ions along axial direction, in radial plane and total probability density of energy distribution due to resulting motion of both axial and radial motion of ions under high temperature and low temperature limits in a Quadrupole Penning trap are presented here. These results reveal the energy properties of ion cloud and are useful to carry out accurate measurement experiments on single stored particle, antiparticles with energy related parameters, under high temperature and low temperature limits in a Quadrupole Penning trap.
Published
How to Cite
Issue
Section
How to Cite
Similar Articles
- Folake Lois Joseph, Adeyemi Sunday Olagunju, Emmanuel Oluseye Adeyefa, Adewale Adeyemi James, Hybrid Block Methods with Constructed Orthogonal Basis for Solution of Third-Order Ordinary Differential Equations , Journal of the Nigerian Society of Physical Sciences: Volume 5, Issue 1, February 2023
- G. Kamarajan, D. Benny Anburaj, V. Porkalai, A. Muthuvel, G. Nedunchezhian, Effect of temperature on optical, structural, morphological and antibacterial properties of biosynthesized ZnO nanoparticles , Journal of the Nigerian Society of Physical Sciences: Volume 4, Issue 3, August 2022
- U. S. Aliyu, I. G. Geidam, M. S. Otto, M. Hussaini, Investigations of the Elastic Moduli of Er2O3 NPs Doped TeO2 – B2O3 – SiO2 Glasses using Theoretical Models , Journal of the Nigerian Society of Physical Sciences: Volume 4, Issue 1, February 2022
- E. Omugbe, M. Abu-Shady, E. P. Inyang, Approximate bound state solutions of the fractional Schr\"{o}dinger equation under the spin-spin-dependent Cornell potential , Journal of the Nigerian Society of Physical Sciences: Volume 6, Issue 1, February 2024
- A. M. Asere, T. O. Owolabi, B. D. Alafe, O. P. Alabi, M. B. Alimi, Assessment of Excess Gamma Dose Exposure Level in Typical Nigeria Commercial Building Materials Distribution Outlets , Journal of the Nigerian Society of Physical Sciences: Volume 3, Issue 3, August 2021
- Olumide Sunday Adesina, Bayesian Multilevel Models for Count Data , Journal of the Nigerian Society of Physical Sciences: Volume 3, Issue 3, August 2021
- I Magaji, A Shuaibu, M. S Abubakar, M Isah, Effect of Substitutional Point Defect of Gold (Au) in Indium (In) Site of Double Halide Perovskite (Cs2InSbCl6) , Journal of the Nigerian Society of Physical Sciences: Volume 3, Issue 4, November 2021
- Edikan E. Akpanibah, Udeme Ini, Portfolio Strategy for an Investor with Logarithm Utility and Stochastic Interest Rate under Constant Elasticity of Variance Model , Journal of the Nigerian Society of Physical Sciences: Volume 2, Issue 3, August 2020
- Rhoda Bernard Gusikit, Solomon Nehemiah Yusuf, Hyeladi Usman Dibal, Victor Bulus Diyelmak, Ahmed Isah Haruna, Comparative analysis of lithium enrichment mechanisms in aquifers in the Benue Trough , Journal of the Nigerian Society of Physical Sciences: Volume 7, Issue 3, August 2025
- Olugbenga Oludayo Oluwasina, Analysis of Adenanthera pavonine L. (Febaceae) Pod and Seed as Potential Pyrolysis Feedstock for Energy production , Journal of the Nigerian Society of Physical Sciences: Volume 4, Issue 2, May 2022
You may also start an advanced similarity search for this article.

