Literature DB >> 23126939

Source geometric considerations for OMEGA Dante measurements.

M J May1, J R Patterson, C Sorce, K Widmann, K B Fournier, F Perez.   

Abstract

The Dante is a 15 channel filtered diode array which is installed on the OMEGA laser facility at the Laboratory for Laser Energetics, University of Rochester. The system yields the spectrally and temporally resolved radiation flux from 50 eV to 10 keV from various targets (i.e., Hohlraum, gas pipes, etc.). The absolute flux is determined from the radiometric calibration of the x-ray diodes, filters, and mirrors and an unfold algorithm applied to the recorded voltages from each channel. The unfold algorithm assumes an emitting source that is spatially uniform and has a constant area as a function of photon energy. The emitting x-ray source is usually considered to be the laser entrance hole (LEH) of a given diameter for Hohlraum type targets or the effective wall area of high conversion efficiency K-shell type targets. This assumption can be problematic for several reasons. High intensity regions or "hot spots" in the x-ray are observed where the drive laser beams strike the target. The "hot spots" create non-uniform emission seen by the Dante. Additionally, thinned walled (50 μm) low-Z targets (C(22)H(10)N(2)O(5)) have an energy dependent source size since the target's walls will be fully opaque for low energies (E < 2-3 keV) yet fully transmissive at higher energies. Determining accurate yields can be challenging for these types of targets. Discussion and some analysis will be presented.

Entities:  

Year:  2012        PMID: 23126939     DOI: 10.1063/1.4734041

Source DB:  PubMed          Journal:  Rev Sci Instrum        ISSN: 0034-6748            Impact factor:   1.523


  1 in total

1.  First exploration of radiation temperatures of the laser spot, re-emitting wall and entire hohlraum drive source.

Authors:  Kuan Ren; Shenye Liu; Xufei Xie; Huabing Du; Lifei Hou; Longfei Jing; Dong Yang; Yang Zhao; Ji Yan; Zhiwen Yang; Zhichao Li; Jianjun Dong; Guohong Yang; Sanwei Li; Zhurong Cao; Ke Lan; Wenyi Huo; Jie Liu; Guoli Ren; Yongkun Ding; Shaoen Jiang
Journal:  Sci Rep       Date:  2019-03-25       Impact factor: 4.379

  1 in total

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