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Linear superposition co-tuning for photoelectric effect by magnetic field and electric field in BiFe0.9Ni0.1O3/Si heterojunction device

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Linear superposition co-tuning for photoelectric effect by magnetic field and electric field in BiFe0.9Ni0.1O3/Si heterojunction device

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  • Research Article
  • Cite Count Icon 4
  • 10.1016/j.asr.2017.07.019
Magnetic and electric field variations during geomagnetically active days over Turkey
  • Jul 20, 2017
  • Advances in Space Research
  • Emine Ceren Kalafatoğlu Eyigüler + 1 more

Magnetic and electric field variations during geomagnetically active days over Turkey

  • Research Article
  • Cite Count Icon 11
  • 10.1002/(sici)1521-186x(1997)18:1<67::aid-bem10>3.3.co;2-g
Comparison of coupling of humans to electric and magnetic fields with frequencies between 100 Hz and 100 kHz
  • Jan 1, 1997
  • Bioelectromagnetics
  • W.T Kaune + 2 more

Recent laboratory and epidemiological results have stimulated interest in the hypothesis that human beings may exhibit biological responses to magnetic and/or electric field transients with frequencies in the range between 100 Hz and 100 kHz. Much can be learned about the response of a system to a transient stimulation by understanding its response to sinusoidal disturbances over the entire frequency range of interest. Thus, the main effort of this paper was to compare the strengths of the electric fields induced in homogeneous ellipsoidal models by uniform 100 Hz through 100 kHz electric and magnetic fields. Over this frequency range, external electric fields of about 25–2000 V/m (depending primarily on the orientation of the body relative to the field) are required to induce electric fields inside models of adults and children that are similar in strength to those induced by an external 1 μT magnetic field. Additional analysis indicates that electric fields induced by uniform external electric and magnetic fields and by the nonuniform electric and magnetic fields produced by idealized point sources will not differ by more than a factor of two until the sources are brought close to the body. Published data on electric and magnetic field transients in residential environments indicate that, for most field orientations, the magnetic component will induce stronger electric fields inside adults and children than the electric component. This conclusion is also true for the currents induced in humans by typical levels of 60 Hz electric and magnetic fields in U.S. residences. Bioelectromagnetics 18:67–76, 1997. © 1997 Wiley-Liss, Inc.

  • Research Article
  • Cite Count Icon 42
  • 10.1002/(sici)1521-186x(1997)18:1<67::aid-bem10>3.0.co;2-n
Comparison of coupling of humans to electric and magnetic fields with frequencies between 100 Hz and 100 kHz
  • Jan 1, 1997
  • Bioelectromagnetics
  • W.T Kaune + 2 more

Recent laboratory and epidemiological results have stimulated interest in the hypothesis that human beings may exhibit biological responses to magnetic and/or electric field transients with frequencies in the range between 100 Hz and 100 kHz. Much can be learned about the response of a system to a transient stimulation by understanding its response to sinusoidal disturbances over the entire frequency range of interest. Thus, the main effort of this paper was to compare the strengths of the electric fields induced in homogeneous ellipsoidal models by uniform 100 Hz through 100 kHz electric and magnetic fields. Over this frequency range, external electric fields of about 25-2000 V/m (depending primarily on the orientation of the body relative to the field) are required to induce electric fields inside models of adults and children that are similar in strength to those induced by an external 1 microT magnetic field. Additional analysis indicates that electric fields induced by uniform external electric and magnetic fields and by the nonuniform electric and magnetic fields produced by idealized point sources will not differ by more than a factor of two until the sources are brought close to the body. Published data on electric and magnetic field transients in residential environments indicate that, for most field orientations, the magnetic component will induce stronger electric fields inside adults and children than the electric component. This conclusion is also true for the currents induced in humans by typical levels of 60 Hz electric and magnetic fields in U.S. residences.

  • Research Article
  • Cite Count Icon 3
  • 10.1063/1.370260
Control of the orientation of human erythrocytes by magnetic and electric fields
  • Apr 15, 1999
  • Journal of Applied Physics
  • T Suda + 1 more

The orientation of human red blood cells (RBCs) was controlled by the application of magnetic and electric fields. Because of their anisotropic diamagnetism, RBCs orient parallel to strong magnetic fields. The electric orientation of erythrocytes is also caused by electric dipoles induced by an electric field. The RBCs orientation is parallel to both the electric and magnetic fields. A 4–5 kV/m alternating current (ac) electric field (10–200 kHz, sine wave) was applied to RBCs suspended in a phosphate buffer solution using a pair of platinum black electrodes spaced 200–250 μm apart. An 8 T magnetic field was applied to the RBCs perpendicular to the direction of the electric field. It was observed that all RBCs were oriented in the same direction and parallel to the electric and magnetic fields. By the application of a horizontal 8 T magnetic field and a 4 kV/m ac electric field positioned perpendicular to one another, the RBCs oriented horizontally and their sedimentation rate was decreased by 18%. The flowing rate of the 10% RBCs suspension was decreased by 7.6% with the application of an 8 T magnetic field and a 4 kV/m ac electric field perpendicular to the direction of the suspension flow. It was observed that flowing RBCs were oriented perpendicular to the direction of the flow by the application of the fields, when the velocity of the suspension of RBCs was less than 300 μm/s.

  • Research Article
  • Cite Count Icon 2
  • 10.5075/epfl-thesis-4903
Electromagnetic Environment Associated with Lightning Strikes to Tall Strike Objects
  • Jan 1, 2011
  • Infoscience (Ecole Polytechnique Fédérale de Lausanne)
  • Seyed Abbas Mosaddeghi

Electromagnetic Environment Associated with Lightning Strikes to Tall Strike Objects

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  • Research Article
  • Cite Count Icon 1
  • 10.15407/rpra25.04.290
ЕЛЕКТРОМАГНІТНІ ЕФЕКТИ АКУСТИКО-ГРАВІТАЦІЙНИХ ХВИЛЬ У ПРИЗЕМНІЙ АТМОСФЕРІ
  • Dec 2, 2020
  • Radio physics and radio astronomy
  • Y Luo + 1 more

Purpose: Acoustic and atmospheric gravity waves (AAGW) are generated by many natural and anthropogenic sources. The AAGW propagation at ionospheric heights is accompanied by the generation of disturbances in the magnetic and electric fields. The plasma presence plays a crucial role. The mechanisms for generating electrical and magnetic disturbances in the near-Earth atmosphere by the AAGW have been studied much worse. Therefore, the validation of the capability to generate electromagnetic disturbances in the near-Earth atmosphere by the AAGW is an urgent problem. The purpose of this paper is to describe the mechanism for generating disturbances in the electric and magnetic fields in the near-Earth atmosphere under the action of AAGW and to estimate the amplitudes of these disturbances for various AAGW sources. Design/methodology/approach: The impact of a series of highenergy sources often results in the generation of synchronous disturbances in the acoustic and geoelectric (atmospheric) fields, when an approximate proportionality between the pressure amplitude and the amplitude of the disturbances in the atmospheric electric field is observed to occur. Based on the observational data and making use of the Maxwell equations, the theoretical estimates of the disturbances in the electric and magnetic fields have been obtained. Findings: Simplified expressions have been obtained for estimating the amplitudes of the electric and magnetic fields under the action of the AAGW generated by natural and manmade sources. The amplitudes of the electric and magnetic fields generated by the AAGW of natural and manmade origin, which travel in the near-Earth atmosphere, have been calculated. The amplitudes of the AAGW generated electric and magnetic fields are shown to be large enough to be detected with the existing electrometers and fluxmeter magnetometers. The magnitudes of the amplitudes of the electric and magnetic fields generated in the near-Earth atmosphere under the action of AAGW are large enough to trigger coupling between the subsystems in the Earth–atmosphere–ionosphere–magnetosphere system. Conclusions: The estimates and not numerous observations are in good agreement. Key words: acoustic and atmospheric gravity waves, near-Earth atmosphere, volume charge, atmospheric pressure disturbances, electric field, magnetic field

  • Research Article
  • Cite Count Icon 518
  • 10.1093/oxfordjournals.aje.a116176
Exposure to Residential Electric and Magnetic Fields and Risk of Childhood Leukemia
  • Nov 1, 1991
  • American Journal of Epidemiology
  • Stephanie J London + 5 more

The relation between exposure to electric and magnetic fields in the home, as assessed by measurements, wiring configuration, and self-reported appliance use, and risk of leukemia was investigated in a case-control study among children from birth to age 10 years in Los Angeles County, California. Cases were ascertained through a population-based tumor registry from 1980 to 1987. Controls were drawn from friends and by random digit dialing. Interviews were obtained from 232 cases and 232 controls. Available for analysis were measurements of the magnetic field in the child's bedroom over 24 hours or longer (164 cases and 144 controls), spot measurements of magnetic and electric fields (140 cases and 109 controls), and wiring configuration (219 cases and 207 controls). No clear associations between leukemia risk and measured magnetic or electric fields were seen. An association between the Denver Wertheimer-Leeper wiring configuration and childhood leukemia risk was observed (odds ratio for very high relative to very low current and underground configuration combined = 2.15, 95% confidence interval 1.08-4.28; p for trend = 0.008) and was not substantially altered by adjustment for potential confounding factors. Cases were more likely than controls to report use of several appliances that produce high electric and magnetic fields. Our results support an association between childhood leukemia risk and wiring configuration, but not direct measurements of electric and magnetic fields.

  • Research Article
  • Cite Count Icon 5
  • 10.3390/en16134847
Effect of Interplay between Parallel and Perpendicular Magnetic and Electric Fields on Partial Discharges
  • Jun 21, 2023
  • Energies
  • Marek Florkowski

This paper reports on the influence of a magnetic field on the dynamics of partial discharges (PDs) in two distinct configurations with respect to the mutual orientation of electric fields. The broad application areas include electrical insulation systems of both high-voltage grids and industrial network devices as well as emerging segments such as electric vehicles or more electric aircraft. Traditionally, PD measurements are only carried out in an electric field. In all current-carrying power equipment, magnetic fields are also superimposed onto electric ones, thus influencing partial discharge behavior. It has been observed that the interplay between electric and magnetic fields influences the dynamics of PDs; parallel and perpendicular mutual orientations were specifically investigated. The measurement technique allowed us to quantitively detect the effect of magnetic fields on PDs in a corona point–plane arrangement. The novel element presented in this article is a detection of PD intensity modulated by a magnetic field, with both perpendicular and parallel orientations with respect to electric one, and a quantitative visualization in the form of the time-sequence diagrams. The simulation of electron trajectories in the presence of electric and magnetic fields revealed the elongation of the pathways and differentiation of the charged particle propagation times. The perpendicularly oriented magnetic field led to a twisting effect, whereas the parallel alignment reflected the propagation along a helical trajectory. A slightly stronger PD intensity amplification effect was observed in the case of a parallel alignment of electric versus magnetic fields as compared with the perpendicular orientation. The presented results may contribute to PD measurement methodology in both electric and magnetic fields as well as a better understanding of the underlying physical mechanisms. The observed effect of the modulation of the magnetically based PD dynamics may be relevant for the insulation systems of power equipment.

  • Research Article
  • Cite Count Icon 44
  • 10.1002/(sici)1097-0274(200006)37:6<607::aid-ajim5>3.0.co;2-l
Leukemia in electric utility workers: the evaluation of alternative indices of exposure to 60 Hz electric and magnetic fields.
  • Apr 27, 2000
  • American Journal of Industrial Medicine
  • Paul J Villeneuve + 4 more

Epidemiological studies have inconsistently demonstrated a positive relationship between magnetic and/or electric fields and leukemia. Although exposure to both 60 Hz electric and magnetic fields can be characterized in many ways, to date, risk assessment has been performed by using only a limited number of exposure indices. The associations between adult leukemia and indices of electric and magnetic fields were explored within a nested case-control study of 31,453 Ontario electric utility workers. The percentage of time spent above electric field thresholds of 20 and 39 V/m was predictive of leukemia risk after adjusting for duration of employment and the arithmetic mean exposure to both electric and magnetic fields (P<0.05). Duration of employment was strongly associated with an increased risk of leukemia. Those who had worked for at least 20 years, and were in the highest tertiles of percentage of time spent above 10 and 20 V/m had odds ratios of 10.17 (95% CI = 1.58-65.30) and 8.23 (95% CI = 1. 24-54.43), respectively, when compared to those in the lowest tertile. Nonsignificant elevations in risk were observed between indices of magnetic fields and leukemia. Our results support the hypothesis that electric fields act as a promoting agent in the etiology of adult leukemia. Exposure assessment based on alternate indices of electric and magnetic fields should be incorporated into future occupational studies of cancer.

  • Research Article
  • Cite Count Icon 66
  • 10.1016/0302-4598(93)80072-3
The action of 50 Hz magnetic and electric fields upon cell proliferation and cyclic AMP content of cultured mammalian cells
  • Mar 1, 1993
  • Bioelectrochemistry and Bioenergetics
  • Jutta Schimmelpfeng + 1 more

The action of 50 Hz magnetic and electric fields upon cell proliferation and cyclic AMP content of cultured mammalian cells

  • Conference Article
  • Cite Count Icon 3
  • 10.1109/tdc-la.2008.4641840
Electric &amp;#x00026; magnetic field assessment for live-line workers next to A 132 KV transmission line conductor
  • Aug 1, 2008
  • C A Belhadj + 4 more

The purpose of this investigation work was the study of the profile of the electric & magnetic field along live-line workers exposed body. The live line worker is exposed to the Saudi Electricity Company (SEC) 132 KV transmission line. Practical exposure scenarios which represent actual working conditions for live-line workers have been identified for the investigation of the profile of electric and magnetic fields over the worker body. Both fields would induce current densities as well electric fields all along the worker body tissues. Both electric and magnetic fields values have been generated using EPRIpsilas workstation software. The field calculations are based on the charge simulation method for the electric field, and Biot-Savart law for the magnetic field. The analysis of the obtained profiles for each scenario has shown a consistent pattern and interesting ascending and descending behavior of both magnetic and electric fields along the body. These results are believed to contribute to the accuracy of the input data to investigate the induced electric fields and current densities in human body tissues and organs. The obtained values of external electric and magnetic fields were well below the recommended international standards limits for the scenarios considered in this study.

  • Research Article
  • Cite Count Icon 12
  • 10.1063/1.4881475
Energy conversion and transfer for plasmas in a magnetic expansion configuration
  • Jun 1, 2014
  • Physics of Plasmas
  • Jiao Cheng + 2 more

A two-dimensional axisymmetric particle-in-cell code with Monte Carlo collision conditions has been used to study particle energy transfer in plasmas and conversion in applied magnetic and electric fields appropriate to coaxial acceleration. The research incorporates a computation scheme with: a model of single particle magnetic interactions; a model of single particle interactions in electric and magnetic fields; and a model of multi-particle collisional interactions in order to understand the energy transfer processes and conversion mechanisms of charged plasma particles. This approach predicts electron and ion motions along with their energy variations for physical conditions that occur in the related models; the results allow comparison with experimental data for magnetic field strengths of 0.01–0.05 T and electrode voltages of 22.0–32.0 V. With the incorporation of magnetic and electric field effects on charged particles, the multi-particle model includes electron-neutral ionization collisions, ion-neutral charge exchange collisions, and electron-ion Coulomb collisions. This research presents a new approach to achieve an underlying understanding of the plasma energy transfer and conversion in the external electric and magnetic fields that is not possible using magnetohydrodynamics continuum representations. Results indicate the following innovative conclusions: (1) Radial and azimuthal energies of magnetized electrons are converted into an axial electron energy component in the diverging magnetic field, and the azimuthal kinetic energy of unmagnetized ions is converted into axial and radial components. (2) In electric and magnetic fields, electric field energy is primarily converted into axial kinetic energy of magnetized electrons by the energy transformation effects of magnetic fields, and for unmagnetized ions, the radial kinetic energy component dominates in the conversion of electric field energy. (3) For the collisional plasma, electron kinetic energy tends to increase (or decrease) to a terminal value since electrons lose energy in collisions then gain energy again from the field. Ions acquire most energy directly from the electric field, although part of the electric field energy arrives to the ions by collisions. Further, the ion axial energy component dominates the total ion energy. The collision processes are found to be integral and essential for the conversion of the plasma non-directed energy gain to be converted into the resultant axial energy, the magnitudes of which are found to be in agreement with experimental results.

  • Research Article
  • Cite Count Icon 58
  • 10.1016/j.physe.2005.02.002
Electric and magnetic field effects on the binding energy of a hydrogenic donor impurity in a coaxial quantum well wire
  • Apr 18, 2005
  • Physica E: Low-dimensional Systems and Nanostructures
  • Saban Aktas + 2 more

Electric and magnetic field effects on the binding energy of a hydrogenic donor impurity in a coaxial quantum well wire

  • Research Article
  • Cite Count Icon 6
  • 10.1016/j.elstat.2014.06.008
Calculation of electric and magnetic induced fields in humans subjected to electric power lines
  • Jul 11, 2014
  • Journal of Electrostatics
  • M Talaat

Calculation of electric and magnetic induced fields in humans subjected to electric power lines

  • Research Article
  • Cite Count Icon 27
  • 10.1080/10288457.2015.1004833
An Analysis of Teachers’ Concept Confusion Concerning Electric and Magnetic Fields
  • Jan 2, 2015
  • African Journal of Research in Mathematics, Science and Technology Education
  • Ans Hekkenberg + 2 more

In an exploratory study, 36 South African physical science teachers’ understanding of basic concepts concerning electric and magnetic fields was studied from a perspective of possible concept confusion. Concept confusion is said to occur when features of one concept are incorrectly attributed to a different concept, in the case of this study to magnetic and electric fields. An example of concept confusion is the perception that a magnetic north pole has an excess of positive charges and consequently attracts negative charges placed in the field. The researchers constructed a framework of 20 interrelated critical aspects of which the scientific topic is composed conceptually. Next, the understanding of concepts and interactions in electric and magnetic fields by 36 teachers of physical science (a subject combining physics and chemistry for grades 10–12), who were enrolled for an in-service subject knowledge upgrading course, was probed through questionnaires and interviews. This approach allowed us to answer the central research question of this study: what alternative understandings do teachers have of the topic of electric and magnetic fields in terms of potential concept confusion? The teachers’ understanding does appear to be interpretable in terms of whether or not they distinguish between the critical aspects identified in this study. The results show six categories of aspects of electric and magnetic fields causing teachers’ inability to distinguish between the two fields, with a consequent confusion of concepts. These categories are: sources of currents; sources of electric fields; sources of magnetic fields; the effects of electric and magnetic fields on materials; electric and magnetic forces; and the direction of the electric and magnetic forces. Results from this research study may contribute to the enhancement of physical science teacher training and consequently school teaching.

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