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Compression of Frequency-Modulated Pulses using Helically Corrugated Waveguides and Its Potential for Generating Multigigawatt rf Radiation

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Compression of Frequency-Modulated Pulses using Helically Corrugated Waveguides and Its Potential for Generating Multigigawatt rf Radiation. / Samsonov, S. V.; Phelps, A.D.R.; Bratman, V. L. et al.
In: Physical review letters, Vol. 92, No. 11, 2004, p. 118301 -118301.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Harvard

Samsonov, SV, Phelps, ADR, Bratman, VL, Burt, G, Denisov, GG, Cross, AW, Ronald, K, He, W & Yin, H 2004, 'Compression of Frequency-Modulated Pulses using Helically Corrugated Waveguides and Its Potential for Generating Multigigawatt rf Radiation', Physical review letters, vol. 92, no. 11, pp. 118301 -118301. <http://www.ncbi.nlm.nih.gov/pubmed/15089178>

APA

Samsonov, S. V., Phelps, A. D. R., Bratman, V. L., Burt, G., Denisov, G. G., Cross, A. W., Ronald, K., He, W., & Yin, H. (2004). Compression of Frequency-Modulated Pulses using Helically Corrugated Waveguides and Its Potential for Generating Multigigawatt rf Radiation. Physical review letters, 92(11), 118301 -118301. http://www.ncbi.nlm.nih.gov/pubmed/15089178

Vancouver

Samsonov SV, Phelps ADR, Bratman VL, Burt G, Denisov GG, Cross AW et al. Compression of Frequency-Modulated Pulses using Helically Corrugated Waveguides and Its Potential for Generating Multigigawatt rf Radiation. Physical review letters. 2004;92(11):118301 -118301.

Author

Samsonov, S. V. ; Phelps, A.D.R. ; Bratman, V. L. et al. / Compression of Frequency-Modulated Pulses using Helically Corrugated Waveguides and Its Potential for Generating Multigigawatt rf Radiation. In: Physical review letters. 2004 ; Vol. 92, No. 11. pp. 118301 -118301.

Bibtex

@article{42a47557684e4126a22e7f2b37f03fd1,
title = "Compression of Frequency-Modulated Pulses using Helically Corrugated Waveguides and Its Potential for Generating Multigigawatt rf Radiation",
abstract = "A new method to generate ultrahigh-power microwave pulses compatible with mildly relativistic electron sources is proposed. This method involves a novel microwave compressor in the form of a metal helically corrugated waveguide, which can enhance the power of frequency-modulated nanosecond pulses up to the multigigawatt level. The results of the proof-of-principle experiments at kilowatt power levels are in good agreement with theory.",
author = "Samsonov, {S. V.} and A.D.R. Phelps and Bratman, {V. L.} and G. Burt and Denisov, {G. G.} and Cross, {A. W.} and K. Ronald and W. He and H. Yin",
year = "2004",
language = "English",
volume = "92",
pages = "118301 --118301",
journal = "Physical review letters",
publisher = "American Physical Society",
number = "11",

}

RIS

TY - JOUR

T1 - Compression of Frequency-Modulated Pulses using Helically Corrugated Waveguides and Its Potential for Generating Multigigawatt rf Radiation

AU - Samsonov, S. V.

AU - Phelps, A.D.R.

AU - Bratman, V. L.

AU - Burt, G.

AU - Denisov, G. G.

AU - Cross, A. W.

AU - Ronald, K.

AU - He, W.

AU - Yin, H.

PY - 2004

Y1 - 2004

N2 - A new method to generate ultrahigh-power microwave pulses compatible with mildly relativistic electron sources is proposed. This method involves a novel microwave compressor in the form of a metal helically corrugated waveguide, which can enhance the power of frequency-modulated nanosecond pulses up to the multigigawatt level. The results of the proof-of-principle experiments at kilowatt power levels are in good agreement with theory.

AB - A new method to generate ultrahigh-power microwave pulses compatible with mildly relativistic electron sources is proposed. This method involves a novel microwave compressor in the form of a metal helically corrugated waveguide, which can enhance the power of frequency-modulated nanosecond pulses up to the multigigawatt level. The results of the proof-of-principle experiments at kilowatt power levels are in good agreement with theory.

M3 - Journal article

VL - 92

SP - 118301

EP - 118301

JO - Physical review letters

JF - Physical review letters

IS - 11

ER -