• High Power Laser Science and Engineering
  • Vol. 1, Issue 3-4, 3-43-4000126 (2013)
Yanwen Xia1、*, Yue Liang1, Sen Li1, Junpu Zhao1, Zhitao Peng1, Hongguang Li2, Hua Liu1, Zhihong Sun1, Kuixing Zheng1, and Xiaofeng Wei1
Author Affiliations
  • 1Research Center of Laser Fusion, CAEP, Mianyang 621900, China
  • 2Xi’an Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Xi’an 710119, China
  • show less
    DOI: 10.1017/hpl.2013.21 Cite this Article Set citation alerts
    Yanwen Xia, Yue Liang, Sen Li, Junpu Zhao, Zhitao Peng, Hongguang Li, Hua Liu, Zhihong Sun, Kuixing Zheng, Xiaofeng Wei. Energy measurement system of a large-aperture high power laser experiment platform[J]. High Power Laser Science and Engineering, 2013, 1(3-4): 3-43-4000126 Copy Citation Text show less

    Abstract

    An energy measurement system in a Large-aperture high power laser experiment platform is introduced. The entire measurement system includes five calorimeters, which carry out the energy measurement of the fundamental frequency before the frequency conversion unit, remaining fundamental frequency, remain second-harmonics, third harmonics, as well as the energy balance measurement after the frequency conversion unit. Combinational indirect calibration and direct calibration are employed to calibrate the sampling coefficients of the calorimeters. The analysis of the data showed that, regarding the energy balance coefficients, combinational calibration approach gives a higher precision, and leads to an energy balance with 1%; and regarding the energy sampling coefficients for the various wavelengths after the frequency conversion, the results from direct and combinational calibration are consistent. The uncertainties for all energy sampling coefficients are within 3%, which guarantees the reliability of the energy measurement for the laser facility.
    $$\begin {eqnarray}E_{420i}=K'_{1}W_{1i}+{K}'_{2}W_{2i}+{K}'_{3}W_{3i}\label {eq1} \end {eqnarray}$$(1)

    View in Article

    $$\begin {eqnarray}W_{4i}=h_{1}W_{1i}+h_{2}W_{2i}+h_{3}W_{3i}\label {eq2} \end {eqnarray}$$(2)

    View in Article

    $$\begin {eqnarray} \left ({\begin {array}{@{}l@{}} {K}'_{1} \\ {K}'_{2} \\ {K}'_{3} \end {array}}\right ) &=& \left ({\begin {array}{@{}lll@{}} W_{1i} & W_{2i} & W_{3i} \\ W_{1j} & W_{2j} & W_{3j} \\ W_{1k} & W_{2k} & W_{3k} \end {array}}\right )^{-1}\ast \left ({\begin {array}{@{}l@{}} E_{420i} \\ E_{420j} \\ E_{420k} \end {array}}\right )\quad \left ({\begin {array}{@{}l@{}} h_{1} \\ h_{2} \\ h_{3} \end {array}}\right ) \\ &=& \left ({\begin {array}{@{}lll@{}} W_{1i} & W_{2i} & W_{3i} \\ W_{1j} & W_{2j} & W_{3j} \\ W_{1k} & W_{2k} & W_{3k} \end {array}}\right )^{-1}\ast \left ({\begin {array}{@{}l@{}} W_{4i} \\ W_{4j} \\ W_{4k} \end {array}}\right )\label {eq3} \end {eqnarray}$$(3)

    View in Article

    Yanwen Xia, Yue Liang, Sen Li, Junpu Zhao, Zhitao Peng, Hongguang Li, Hua Liu, Zhihong Sun, Kuixing Zheng, Xiaofeng Wei. Energy measurement system of a large-aperture high power laser experiment platform[J]. High Power Laser Science and Engineering, 2013, 1(3-4): 3-43-4000126
    Download Citation