Abstract
PurposeThe low-energy X-ray telescope (LE) is a main instrument of the
Insight-HXMT mission and consists of 96 swept charge devices covering the 1–10 keV energy band. The energy gain and resolution are continuously calibrated by analyzing Cassiopeia A (Cas A) and blank sky data, while the effective areas are also calibrated with the observations of the Crab Nebula. In this paper, we present the evolution of the in-orbit performances of LE in the first 5 years since launch.
MethodsThe
Insight-HXMT data analysis software package (HXMTDAS) is utilized to extract the spectra of Cas A, blank sky, and Crab Nebula using different good time interval selections. We fit a model with a power-law continuum and several Gaussian lines to different ranges of Cas A and blank sky spectra to get peak energies of their lines through xspec. After updating the energy gain calibration in CALibration DataBase (CALDB), we rerun the Cas A data to obtain the energy resolution. An empirical function is used to modify the simulated effective areas so that the background-subtracted spectrum of the Crab Nebula can best match the standard model of the Crab Nebula.
ResultsThe energy gain, resolution, and effective areas are calibrated every month. The corresponding calibration results are duly updated in CALDB, which can be downloaded and used for the analysis of
Insight-HXMT data. Simultaneous observations with
NuSTARand
NICERcan also be used to verify our derived results.
ConclusionLE is a well-calibrated X-ray telescope working in 1–10 keV band. The uncertainty of LE gain is less than 20 eV in 2–9 keV band, and the uncertainty of LE resolution is less than 15 eV. The systematic errors of LE, compared to the model of the Crab Nebula, are lower than 1.5% in 1–10 keV.

Xiaobo Li, Yong Chen, Liming Song, et al. In-orbit performance of LE onboard Insight-HXMT in the first 5 yearsJ. Radiation Detection Technology and Methods, 2023, 7(1): 25-33. DOI: 10.1007/s41605-023-00391-3
| Citation: |
Xiaobo Li, Yong Chen, Liming Song, et al. In-orbit performance of LE onboard Insight-HXMT in the first 5 yearsJ. Radiation Detection Technology and Methods, 2023, 7(1): 25-33. DOI: 10.1007/s41605-023-00391-3
|
Xiaobo Li, Yong Chen, Liming Song, et al. In-orbit performance of LE onboard Insight-HXMT in the first 5 yearsJ. Radiation Detection Technology and Methods, 2023, 7(1): 25-33. DOI: 10.1007/s41605-023-00391-3
| Citation: |
Xiaobo Li, Yong Chen, Liming Song, et al. In-orbit performance of LE onboard Insight-HXMT in the first 5 yearsJ. Radiation Detection Technology and Methods, 2023, 7(1): 25-33. DOI: 10.1007/s41605-023-00391-3
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