Circuit & Electromagnetic Sys Desgn (PEP-4)
These are the Circuit and Electromagnetic System Design Notes, PEP-4, Note 1-69, assembled by Dr. Carl E. Baum.

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CESDN 1, Not Currently Available

CESDN 2, D. W. Forster and J. C. Martin, 2.5 Megagauss from a Capacitor Discharge, 12 Sep 66, Atomic Weapons Research Establishment

CESDN 3, J.C. Martin and A. MacAulay, A Cheap Megajoule Bank, Jun 68, Atomic Weapons Research Establishment

CESDN 4, J.C. Martin, Nanosecond Pulse Technique, Apr 70, Atomic Weapons Research Establishment

CESDN 5, D. L. Johnson, REBA, A Pulse Electron Beam Generator, Dec 70, Sandia Corp.

CESDN 6, Not Currently Available

CESDN 7, Not Currently Available

CESDN 8, Not Currently Available

CESDN 9, Not Currently Available

CESDN 10, Not Currently Available

CESDN 11, Not Currently Available

CESDN 12, S. Shope, I. Smith, G. Yonas, P. Spence, R. Ward, and B. Ecker, Development and Applications of Mylar Striplines, Final Report, Jan 70, Physics International Company

CESDN 13, G. Yonas, I. Smith, P. Spence, S. Putnam, and P. Champney, Development and Application of a I-MY l-MA Mylar Dielectric Pulsed Electron Acceleration and Concepts for Higher Energy Modular Generator Systems, Jun 71, Physics International Company

CESDN 14, D. M. Strickland, Split-Ring Marx Generator Grading, May 73, Air Force Weapons Laboratory

CESDN 15, J.C. Martin, Pulse Charged Line for Laser Pumping, Feb 73, Atomic Weapons Research Establishment

CESDN 16, J. C. Martin, HUN Lecture No.3, Jun 73, Atomic Weapons Research Establishment

CESDN 17, J.C. Martin, HUN Lecture No.5, Jun 73, Atomic Weapons Research Establishment

CESDN 18, R. W. Lathman, M. I. Sancer, and A. D. Varvatsis, Matching a Particular Pulser to a Parallel-Plate Simulator, Nov 74, Tetra Tech, Inc.

CESDN 19, C. Edwards, M. D. Hutchinson, J.C. Martin, and T. H. Storr, 'Lark' A Modest Repetitive Pulse Generator, May 75, Imperial College of Science and Technology and Atomic Weapons Research Establishment

CESDN 20, Not Currently Available

CESDN 21, J. D. Shipman Jr., A 7 ohm, 1 Mv 50 nsec Walter Dielectric Pulse Generator, 16 Sep 68, Naval Research Laboratories

CESDN 22, D. C. dePackh and J. E. Ulrich, Program WAVETRAN, 23 May 69, Naval Research Laboratories

CESDN 23, W. H. Lupton, Approximate Calculations of Energy Transfer Through an Exponential Line, 12 Aug 68, Naval Research Laboratories

CESDN 24, W. H. Lupton, Mismatch Load Efficiencies, 15 Aug 68, Naval Research Laboratories

CESDN 25, Not Currently Available

CESDN 26, Not Currently Available

CESDN 27, J. Block, et al, The NRL Relativistic Electron Beam Program, Aug 71, Naval Research Laboratories

CESDN 28, L. S. Levine and I. M. Vitkovitsky, Pulsed Power Technology for Controlled Thermonuclear Fusion, Aug 71, Naval Research Laboratories

CESDN 29, W. R. Bell, et aI, Low Impedance Simulators Studies, 30 Mar 70, Ion Physics Corp.

CESDN 30, T. R. Lockner and B. R. Kusse, Removal of Post and Prepulses on Unbalanced Blumleins, Oct 72, Cornell University

CESDN 31, Not Currently Available

CESDN 32, I. L. Harrison, Solution of Peaking Equation for Finite Storage Capacitor Size, Jan 73, Maxwell Laboratories


CESDN 33, D. V. Giri and C. E. Baum, Theoretical Considerations for Optimal Positioning of Peaking Capacitor Anns about a Marx Generator Parallel to a Ground Plane, Jun 85, Pro-Tech, Air Force Weapons Laboratory

CESDN 34, I. Smith, Approximate Design Criteria and Performance Estimates for a Distributed Switch Array Based on Gas Spark Gaps, Jun 87, Pulse Sciences, Inc.

CESDN 35, D. V. Giri and C. E. Baum, Optimal Positioning of a Set of Peaker Arms in a Ground Plane, Feb 88, Pro-Tech, Air Force Weapons Laboratory

CESDN 36, D. V. Giri and C. E. Baum, Coupled Transmission-Line Model of Marx Generator with Peaking-Capacitor Arms, Jun 88, Pro-Tech, Air Force Weapons Laboratory


CESDN 37, C. E. Baum, Combining RF Sources Using CN Symmetry, Jun 89, Air Force Weapons Laboratory

CESDN 38, A. Biggs, Slow Wave Transmission Line Transformers, Dec 89, Air Force Weapons Laboratory

CESDN 39, C. E. Baum, Matching Modulated Electron Beam to Waveguide, Apr 90, Air Force Weapons Laboratory

CESDN 40, D. V. Giri, Preliminary Considerations for High-Power Microwave (HPM) Radiating Systems, Dec 90, Pro-Tech

CESDN 41, J. L. Harrison, The Peaking Circut Revisited, Jul 84, Maxwell Laboratories, Inc.

CESDN 42, J.P. O'Loughlin, Calculation of the Inductance of a Circular Coil Consisting of any Number of Coaxial Turns, Each Individual Turn being of any Wire Size Located in Parallel Planes and of any Spacing to the Other Turns, February 1998, Air Force Research Lab

CESDN 43, C.E. Baum and J.M. Lehr, Charging of Marx Generators, Sept. 1999, Air Force Laboratory Directed Energy Directorate

CESDN 44, C.E. Baum and J.M. Lehr, Nonuniform-Transmission-Line Transformers for Fast High-Voltage Transients, Feb. 2000, Air Force Laboratory Directed Energy Directorate

CESDN 45, C.E. Baum, Switched Oscillators, Sept. 2000, Air Force Laboratory Directed Energy Directorate

CESDN 46, C.E. Baum, A Transmission-Line Transformer for Matching the Switched Oscillator to a Higher-Impedance Resistive Load, Aug. 2001, Air Force Laboratory Directed Energy Directorate

CESDN 47, C.E. Baum, Sequential Quarter-Wave Transmission-Line Transformers, June 2002, Air Force Laboratory Directed Energy Directorate

CESDN 48, C.E. Baum, Compression of Sinusoidal Pulses for High-Power Microwaves, March 2004, Air Force Laboratory Directed Energy Directorate

CESDN 49, C.E. Baum, Differential Marx Generators, April 2004, Air Force Laboratory Directed Energy Directorate

CESDN 50, D.V. Giri, F.M. Tesche, C.E. Baum, Feb. 2006, An Overview of High-Power Electromagnetic (HPEM) Radiating and Conducting Systems, AFOSR

CESDN 51, C.E. Baum, March 2006, Impedance-Matched Magic Tee, AFOSR

CESDN 52, C.E. Baum, March 2006, Coupling Ports in Waveguide Cavities For Multiplying Fields in Pulse-Compression Schemes, AFOSR

CESDN 53, F.M. Tesche, D.V. Giri, W.D. Prather, April 2006, Scattered EM Field Responses of Canonical Scatterers Illuminated by an Impulse Radiating Antenna (IRA), SBIR

CESDN 54, C.E. Baum, March 2008, Some Thoughts Concerning Extending the Performance of Switched Oscillators, AFOSR

CESDN 55, C.E. Baum, May 2008, The Lumped-Element Switched Oscillator, AFOSR

CESDN 56, C.E. Baum, May 2008, Switched Oscillators Combined With Transformers to Give Design Flexibility, AFOSR

CESDN 57, A Simplified Theory of Microwave Pulse Compression, Andrey D. Andreev, Everett G. Farr, and Edl Schamiloglu, Aug. 2008

CESDN 58, D. V. Giri, Switched Oscillators and Their Integration into Helical Antennas, July 4, 2009

CESDN 59, Carl E. Baum, Variations on the Switched-Oscillator Theme, 4 February 2009

CESDN 60, Carl E. Baum, Raising Cavity Q for Microwave-Pulse Compression by Reducing Aperture Skin-Effect Losses, 28 June 2009

CESDN 61, Carl E. Baum, Increasing Q of Waveguide Pulse-Compression Cavities, 3 July 2009

CESDN 62, Carl E. Baum, Tradeoff Between Pulse Amplitude and Pulse Length From a Microwave-Pulse-Compression Source, July 2009

CESDN 63, E. G. Farr, L. H. Bowen, W. D. Prather, and C. E. Baum, Microwave Pulse Compression Experiments at Low and High Power, Jan. 2010

CESDN 64, Carl E. Baum, Use of the H0,1 Mode in Circular Waveguide for Microwave Pulse Compression, Oct. 2009

CESDN 65, Carl E. Baum, Use of an Etalon as a Microwave Pulse Compressor, Nov. 2009

CESDN 66, Carl E. Baum, A High-Power Dielectric-Rod Resonator for Microwave Pulse Compression, Feb. 2010

CESDN 67, Carl E. Baum, Prashanth Kumar and Serhat Altunc, Downconverting THz Resonant Pulses upon Reception, June, 2010

CESDN 68, Carl E. Baum, Options in Microwave Pulse Compression, May 2010

CESDN 69 A Fully Symmetric Waveguide-Cavity Microwave Pulse Compressor, Carl E. Baum, June 2010


Festival of the Cranes, Socorro, New Mexico 2007. Photo by Ralph Lee Terry

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Last Updated October 25, 2015 Electrical and Computer Engineering Department • The University of New Mexico.
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