1993
DOI: 10.1103/physreve.47.1299
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Fast-discharge excitation of hot capillary plasmas for soft-x-ray amplifiers

Abstract: High-temperature iT, > 150 e'V), small-diameter (--200 J..lm) plasma columns have been efficiently generated by very fast (13 ns rise time, 28 ns full width at half maximum) pulsed discharge excitation of capillary channels filled with preionized gas. Discharges in argon-filled capillaries at currents between 20 and 60 kA produced plasmas with Ar x-Ar XIV line emission, in which the degree of ionization was controlled by the magnitude of the current pulse. The characteristics of these plasmas differ from thos… Show more

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Cited by 71 publications
(39 citation statements)
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“…While research towards the development of table-top x-ray lasers based on nanosecond pulse laser drivers continues to date, 80 much of the recent effort has shifted towards the use of small-scale high power ultrafast laser drivers [74][75][76][77][78]216 and compact high power discharges. 17,[68][69][70][81][82][83]124,[152][153][154][155] New opportunities for the efficient pumping of table-top soft x-ray lasers have arisen from the development of compact, very high power ultrafast optical lasers based on the technique of chirped-pulse amplification ͑CPA͒, and from the demonstration of highly ionized capillary discharge plasma columns of unprecedented axial uniformity. CPA of ultrashort laser pulses presently allows for the generation of multiterawatt peak powers from tabletop systems operating at repetition rates of typically 10 Hz.…”
Section: Present Status Of Table-top Driversmentioning
confidence: 99%
See 1 more Smart Citation
“…While research towards the development of table-top x-ray lasers based on nanosecond pulse laser drivers continues to date, 80 much of the recent effort has shifted towards the use of small-scale high power ultrafast laser drivers [74][75][76][77][78]216 and compact high power discharges. 17,[68][69][70][81][82][83]124,[152][153][154][155] New opportunities for the efficient pumping of table-top soft x-ray lasers have arisen from the development of compact, very high power ultrafast optical lasers based on the technique of chirped-pulse amplification ͑CPA͒, and from the demonstration of highly ionized capillary discharge plasma columns of unprecedented axial uniformity. CPA of ultrashort laser pulses presently allows for the generation of multiterawatt peak powers from tabletop systems operating at repetition rates of typically 10 Hz.…”
Section: Present Status Of Table-top Driversmentioning
confidence: 99%
“…The advances in pump sources include the development of multiterawatt table-top optical laser systems based on chirped pulse amplification [62][63][64][65] and fast capillary discharges capable of generating highly ionized plasma columns with very high uniformity and length-to-diameter aspect ratios approaching 1000 to 1. [66][67][68][69][70] Also contributing to the progress towards practical table-top x-ray lasers is the achievement of very important reductions in the laser pump energy required for lasing, [72][73][74][75][76][77][78][79][80] to less than 1J. [72][73][74][75]80 This is in part the result of the implementation of excitation mechanisms that take full advantage of the high intensity and short pulse width of new ultrashort pulse optical laser systems.…”
Section: Introductionmentioning
confidence: 99%
“…This is of significance because previously plasma inhomogeneities due to nonuniform compression and plasma instabilities that destroy the amplification had hampered the development of discharge pumped soft x-ray lasers [16]. We also report time resolved data that validate the results of magnetohydrodynamic calculations, giving a deeper understanding of the dynamics of the discharge plasma column and the lasing process.The discharge setup and pulse generator used in the experiments have been previously described [17]. To conduct the double pass amplification experiments the anode electrode was modified to accommodate an iridium mirror in close proximity with the end of the plasma column.…”
mentioning
confidence: 99%
“…The discharge setup and pulse generator used in the experiments have been previously described [17]. To conduct the double pass amplification experiments the anode electrode was modified to accommodate an iridium mirror in close proximity with the end of the plasma column.…”
mentioning
confidence: 99%
“…Il a été enregistré dans un plasma d'argon à une pression de 1 mbar. Ce spectre est présenté en comparaison avec celui mieux résolu de la référence [2]. Il fait apparaître très clairement le présence de raies d'argon 10 et 11 fois ionisés.…”
Section: Spectroscopie Euvunclassified