Characterization of a subpicosecond x-ray streak camera for ultrashort laser-produced plasmas experiments
We present results of the characterization of an ultrafast x-ray streak camera, based on Photonis (formerly Philips Photonics) P860 tube, developed for use in ultrashort laser-produced plasma research. The streak camera presented here (called PX1) has been extensively characterized with continuous a...
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Veröffentlicht in: | Review of scientific instruments 2000-10, Vol.71 (10), p.3627-3633 |
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creator | Gallant, P. Forget, P. Dorchies, F. Jiang, Z. Kieffer, J. C. Jaanimagi, P. A. Rebuffie, J. C. Goulmy, C. Pelletier, J. F. Sutton, M. |
description | We present results of the characterization of an ultrafast x-ray streak camera, based on Photonis (formerly Philips Photonics) P860 tube, developed for use in ultrashort laser-produced plasma research. The streak camera presented here (called PX1) has been extensively characterized with continuous and pulsed x-ray sources. Time resolution of 350 fs in the keV x-ray range has been achieved, while maintaining a high spatial resolution of 40 μm along a direction perpendicular to the time dispersion axis. It is shown that the streak camera response is lower when the photocathode is illuminated by a pulsed source than when used with a continuous one. This effect seems to be related to a change in the phosphor response. The camera has been used to achieve high-resolution subpicosecond time-resolved spectroscopy of ultrashort laser plasmas allowing the measurements of K-shell line emission durations of 700 fs. |
doi_str_mv | 10.1063/1.1310347 |
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This effect seems to be related to a change in the phosphor response. 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It is shown that the streak camera response is lower when the photocathode is illuminated by a pulsed source than when used with a continuous one. This effect seems to be related to a change in the phosphor response. The camera has been used to achieve high-resolution subpicosecond time-resolved spectroscopy of ultrashort laser plasmas allowing the measurements of K-shell line emission durations of 700 fs.</description><subject>Physics</subject><issn>0034-6748</issn><issn>1089-7623</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2000</creationdate><recordtype>article</recordtype><recordid>eNqdkEFLAzEQhYMoWKsH_0GuCqmZzWY3PZaiVih40XOYZhO6um2WJC2tv95Ui3p2LsM8vnnDPEKugY-AV-IORiCAi7I-IQPgaszqqhCnZMCzxqq6VOfkIsY3nksCDEg7XWJAk2xoPzC1fk29o0jjZtG3xkdr_LqhOxZwT2MKFt-pwZUNSJ0PdNOlgHHpQ6IdRhtYH3yzMbahfZ5XGKnd9dl5ZdcpXpIzh120V8c-JK8P9y_TGZs_Pz5NJ3NmhIDESo5FIZWsVVk5t1gU0mIDUnLnoBRC1sVYFlZyWRkjm9phI_KHyqJRDrkCMSQ3375L7HSfj2PYa4-tnk3m-qBxkBWMC7X9w5rgYwzW_SwA14c8Nehjnpm9_WajadNXVP-Dtz78grpvnPgEw9GEtA</recordid><startdate>20001001</startdate><enddate>20001001</enddate><creator>Gallant, P.</creator><creator>Forget, P.</creator><creator>Dorchies, F.</creator><creator>Jiang, Z.</creator><creator>Kieffer, J. 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It is shown that the streak camera response is lower when the photocathode is illuminated by a pulsed source than when used with a continuous one. This effect seems to be related to a change in the phosphor response. The camera has been used to achieve high-resolution subpicosecond time-resolved spectroscopy of ultrashort laser plasmas allowing the measurements of K-shell line emission durations of 700 fs.</abstract><pub>American Institute of Physics</pub><doi>10.1063/1.1310347</doi><tpages>7</tpages><orcidid>https://orcid.org/0000-0002-5922-9585</orcidid></addata></record> |
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subjects | Physics |
title | Characterization of a subpicosecond x-ray streak camera for ultrashort laser-produced plasmas experiments |
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