Search Results - "Garner, A. L."

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  1. 1

    Numerical assessments of geometry, proximity and multi-electrode effects on electroporation in mitochondria and the endoplasmic reticulum to nanosecond electric pulses by Baker, C., Willis, A., Milestone, W., Baker, M., Garner, A. L., Joshi, R. P.

    Published in Scientific reports (11-10-2024)
    “…Most simulations of electric field driven bioeffects have considered spherical cellular geometries or probed symmetrical structures for simplicity. This work…”
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    Journal Article
  2. 2

    A Multi-Dimensional Child-Langmuir Law with Surface Roughness by Harsha, N.R. Sree, Garner, A. L.

    “…The Child-Langmuir (CL) law determines the maximum current density, or space-charge limited current density (SCLCD), for a one-dimensional (1D) planar diode…”
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    Conference Proceeding
  3. 3

    Electron Cycloidal and Brillouin Flows in a Two-Dimensional Planar Crossed-Field Gap by Zhu, X., Luginsland, J. W., Browning, J., Garner, A. L.

    “…In crossed-field devices, Brillouin flow is regarded as the prevalent equilibrium flow 1 . One-dimensional (1-D) theory and particle-in-cell (PIC) simulations…”
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    Conference Proceeding
  4. 4

    Techniques for Determining Space-Charge Limited Current for Nonplanar Crossed-Field Diodes by Wright, J. K., Harsha, N.R. S., Garner, A. L.

    “…Calculating the space-charge-limited current (SCLC) is critical for numerous applications, including high-power microwaves (HPM), electric thrusters, and nano…”
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    Conference Proceeding
  5. 5

    Theoretical Analysis of Microwave Breakdown for Microscale Gaps by Mahajanl, S., Loveless, A. M., Semnani, A., Ayyaswamy, V., Garner, A. L.

    “…While DC gas breakdown is traditionally driven by Townsend avalanche (TA), the strong electric fields that arise for microscale gaps at non-vacuum pressures…”
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    Conference Proceeding
  6. 6

    Simulations of Permittivity and Permeability of Nonlinear Materials by Loveless, A., Mannodi-Kanakkithodi, A. K., Crawford, T. D., Sengupta, S., Garner, A. L.

    “…Nonlinear transmission lines (NLTLs) provide a low-cost, all solid-state design for generating high-power microwaves 1 . Several studies have used lumped…”
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    Conference Proceeding
  7. 7

    Space-Charge-Limited Current in Finite Concentric Cylindrical Diodes by Sree Harsha, N.R., Watrous, J., Garner, A. L.

    “…Characterizing space-charge-limited current (SCLC), the maximum current that can flow in the steady-state operation of a diode, is important for numerous…”
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    Conference Proceeding
  8. 8

    Secondary Electron Emission Study In L-4953 Crossed-Field Amplifier by Manker, N.K., Pearlman, M., Watrous, J., Roark, C., Smithe, D., Garner, A. L., Worthington, M., Browning, J.

    “…The L-4953 Cross-Field Amplifier (CFA) is a high-power (≈5MW), moderate gain (11.2 dB), pulsed, L-band (1.28 to 1.35 GHz), reentrant, backward wave, thermionic…”
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    Conference Proceeding
  9. 9

    Theoretical Analysis of Electron Trajectories in a Collisional Crossed-Field Gap by Komrska, A. M., Breen, L. I., Loveless, A. M., Cartwright, K. L., Garner, A. L.

    “…Many applications, including Hall-effect thrusters and high-power microwaves, involve the application of a magnetic field orthogonal to the electric field…”
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    Conference Proceeding
  10. 10

    Incorporating Collisions into the Limiting Current of a Crossed-Field Gap by Breen, L. I., Loveless, A. M., Komrska, A. M., Cartwright, K. L., Garner, A. L.

    “…Crossed-field devices, which have magnetic fields perpendicular to the electric field across the gap, are used for numerous high-power applications, such as…”
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    Conference Proceeding
  11. 11

    A Simulation Study of the Gain Limits of a Crossed-Field Amplifier by Pearlman, M., Watrous, J., Smithe, D., Yue, A., Garner, A. L., Worthington, M., Browning, J.

    “…The recently available design specifications for the L-4953 crossed-field amplifier (CFA) from Stellant Systems provides an excellent high-power CFA simulation…”
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    Conference Proceeding
  12. 12

    Implications of a simple mathematical model to cancer cell population dynamics by Garner, A. L., Lau, Y. Y., Jordan, D. W., Uhler, M. D., Gilgenbach, R. M.

    Published in Cell proliferation (01-02-2006)
    “…  Recent research in cancer progression and treatment indicates that many forms of cancer arise from the development of a small subpopulation of abnormal…”
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    Journal Article
  13. 13

    Time domain dielectric spectroscopy measurements of HL-60 cell suspensions after microsecond and nanosecond electrical pulses by Garner, A.L., Nianyong Chen, Jing Yang, Kolb, J., Swanson, R.J., Loftin, K.C., Beebe, S.J., Joshi, R.P., Schoenbach, K.H.

    Published in IEEE transactions on plasma science (01-10-2004)
    “…Pulsed electric fields (PEFs) above a certain voltage threshold cause electroporation for microsecond pulses and intracellular effects for submicrosecond…”
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    Journal Article
  14. 14

    Domains within RbpA Serve Specific Functional Roles That Regulate the Expression of Distinct Mycobacterial Gene Subsets by Prusa, Jerome, Jensen, Drake, Santiago-Collazo, Gustavo, Pope, Steven S, Garner, Ashley L, Miller, Justin J, Ruiz Manzano, Ana, Galburt, Eric A, Stallings, Christina L

    Published in Journal of bacteriology (01-07-2018)
    “…The RNA polymerase (RNAP) binding protein A (RbpA) contributes to the formation of stable RNAP-promoter open complexes (RP ) and is essential for viability in…”
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    Journal Article
  15. 15

    Buckingham Pi Analysis of Railgun Multiphysics by Garner, Allen L., Lewis, Keith

    Published in IEEE transactions on plasma science (01-08-2014)
    “…Predicting railgun physics is complicated by the presence of multiple physical phenomena whose coupling is incompletely understood. Because computational…”
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    Journal Article
  16. 16

    AC gas breakdown scaling laws by Loveless, A. M., Garner, A. L.

    “…Analytically predicting RF breakdown is vital for understanding plasma behavior. While theoretical and particle-in-cell (PIC) analyses have assessed RF…”
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    Conference Proceeding
  17. 17

    Leukemic cell intracellular responses to nanosecond electric fields by Chen, Nianyong, Schoenbach, Karl H., Kolb, Juergen F., James Swanson, R., Garner, Allen L., Yang, Jing, Joshi, Ravindra P., Beebe, Stephen J.

    “…Intense, nanosecond (ns) pulsed electric fields (PEFs) are known to affect the intracellular structures of cells. The probability of preferentially inducing…”
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    Journal Article
  18. 18

    Nanosecond electric pulses penetrate the nucleus and enhance speckle formation by Chen, Nianyong, Garner, Allen L., Chen, George, Jing, Yu, Deng, Yuping, Swanson, R. James, Kolb, Juergen F., Beebe, Stephen J., Joshi, Ravindra P., Schoenbach, Karl H.

    “…Nanosecond electric pulses generate nanopores in the interior membranes of cells and modulate cellular functions. Here, we used confocal microscopy and flow…”
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    Journal Article
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  20. 20

    Frequency dependence of electroporation of mammalian cells by pulsed high power radiofrequency and ultrawideband radiation by Jordan, D.W., Garner, A.L., Gilgenbach, R.M., Uhler, M.D., Gates, L., Lau, Y.Y.

    “…Summary form only given. A series of experiments has been performed to determine the effectiveness of radiofrequency (RF) and ultrawideband electric fields for…”
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    Conference Proceeding