Spectral Performance of Single-Channel Plastic and GAGG Scintillator Bars of the CUbesat Solar Polarimeter (CUSP)
Abstract
1. Solar Flare Polarimetry with CUSP
1.1. The Physics of Solar Flares and the Need for Polarimetry
1.2. Compton Polarimetry
1.3. The CUSP Polarimeter: Instrument Design and Principle of Operation
2. Single-Channel Spectral Performance
2.1. Scatterers
2.2. Absorbers
2.3. Coincidence
3. Conclusions
Author Contributions
Funding
Data Availability Statement
Conflicts of Interest
Abbreviations
| APD | Avalanche PhotoDiode |
| ASI | Agenzia Spaziale Italiana (Italian Space Agency) |
| ASIC | Application Specific Integrated Circuit |
| CAD | Computer-Aided Design |
| CME | Coronal Mass Ejection |
| CUSP | CUbesat Solar Polarimeter |
| ESR | Enhanced Specular Reflector |
| FEE | Front-End Electronics |
| GAGG | Gadolinium Aluminum Gallium Garnet |
| GUI | Graphical User Interface |
| HXR | Hard X-Ray |
| MAPMT | Multi-Anode PhotoMultiplier Tube |
| MDP | Minimum Detectable Polarization |
| PMT | PhotoMultiplier Tube |
| PTFE | PolyTetraFluoroEthylene |
| PVT | PolyVinylToluene |
| SMD | Surface-Mount Device |
| UBA | Ultra Bi-Alkali |
References
- Temmer, M. Kinematical properties of coronal mass ejections. Astron. Nachrichten 2016, 337, 1010–1015. [Google Scholar] [CrossRef]
- Nagasawa, S.; Kawate, T.; Narukage, N.; Takahashi, T.; Caspi, A.; Woods, T.N. Study of Time Evolution of Thermal and Nonthermal Emission from an M-class Solar Flare. Astrophys. J. 2022, 933, 173. [Google Scholar] [CrossRef]
- Zharkova, V.V.; Kuznetsov, A.A.; Siversky, T.V. Diagnostics of energetic electrons with anisotropic distributions in solar flares. I. Hard X-rays bremsstrahlung emission. Astron. Astrophys. 2010, 512, A8. [Google Scholar] [CrossRef]
- Jeffrey, N.L.S.; Saint-Hilaire, P.; Kontar, E.P. Probing solar flare accelerated electron distributions with prospective X-ray polarimetry missions. Astron. Astrophys. 2020, 642, A79. [Google Scholar] [CrossRef]
- Emslie, A.G.; Brown, J.C. The polarization and directivity of solar-flare hard X-ray bremsstrahlung from a thermal source. Astrophys. J. 1980, 237, 1015–1023. [Google Scholar] [CrossRef]
- Saint-Hilaire, P.; Krucker, S.; Lin, R.P. A Statistical Survey of Hard X-ray Spectral Characteristics of Solar Flares with Two Footpoints. Sol. Phys. 2008, 250, 53–73. [Google Scholar] [CrossRef]
- Tindo, I.P.; Ivanov, V.D.; Mandel’stam, S.L.; Shuryghin, A.I. On the polarization of the emission of X-ray solar flares. Sol. Phys. 1970, 14, 204–207. [Google Scholar] [CrossRef]
- Tindo, I.P.; Ivanov, V.D.; Mandel’stam, S.L.; Shuryghin, A.I. New measurements of the polarization of X-ray solar flares. Sol. Phys. 1972, 24, 429–433. [Google Scholar] [CrossRef]
- Tindo, I.; Ivanov, V.; Valníček, B.; Livshits, M. Preliminary interpretation of the polarization measurements performed on ‘Intercosmos-4’during three X-ray solar flares. Sol. Phys. 1972, 27, 426–435. [Google Scholar] [CrossRef]
- Tramiel, L.J.; Novick, R.; Chanan, G. Polarization evidence for the isotropy of electrons responsible for the production of 5–20 keV X-rays in solar flares. Astrophys. J. 1984, 280, 440–447. [Google Scholar] [CrossRef]
- Boggs, S.E.; Coburn, W.; Kalemci, E. Gamma-Ray Polarimetry of Two X-Class Solar Flares. Astrophys. J. 2006, 638, 1129. [Google Scholar] [CrossRef]
- Suarez-Garcia, E.; Hajdas, W.; Wigger, C.; Arzner, K.; Güdel, M.; Zehnder, A.; Grigis, P. X-ray polarization of solar flares measured with RHESSI. Sol. Phys. 2006, 239, 149–172. [Google Scholar] [CrossRef]
- Zhitnik, I.A.; Logachev, Y.I.; Bogomolov, A.V.; Denisov, Y.I.; Kavanosyan, S.S.; Kuznetsov, S.N.; Morozov, O.V.; Myagkova, I.N.; Svertilov, S.I.; Ignat’ev, A.P.; et al. Polarization, temporal, and spectral parameters of solar flare hard X-rays as measured by the SPR-N instrument onboard the CORONAS-F satellite. Sol. Syst. Res. 2006, 40, 93–103. [Google Scholar] [CrossRef]
- Klein, O.; Nishina, Y. Über die Streuung von Strahlung durch freie Elektronen nach der neuen relativistischen Quantendynamik von Dirac. Z. Für Phys. 1929, 52, 853–868. [Google Scholar] [CrossRef]
- Weisskopf, M.C.; Elsner, R.F.; O’Dell, S.L. On understanding the figures of merit for detection and measurement of X-ray polarization. Int. Soc. Opt. Photonics SPIE 2010, 7732, 77320E. [Google Scholar] [CrossRef]
- Fabiani, S.; Monte, E.D.; Alimenti, A.; Campana, R.; Centrone, M.; Costa, E.; Angelis, N.D.; Cesare, G.D.; Cosimo, S.D.; Persio, G.D.; et al. The CubeSat solar polarimeter (CUSP): Mission overview II. In Proceedings of the UV, X-Ray, and Gamma-Ray Space Instrumentation for Astronomy XXIV, San Diego, CA, USA, 5–7 August 2025; Siegmund, O.H., Hoadley, K., Eds.; International Society for Optics and Photonics, SPIE: Bellingham, WA, USA, 2025; Volume 13625, p. 136250F. [Google Scholar] [CrossRef]
- Angelis, N.D.; Kumar, A.; Fabiani, S.; Monte, E.D.; Costa, E.; Lombardi, G.; Soffitta, P.; Alimenti, A.; Campana, R.; Centrone, M.; et al. Prototype development and calibration of the CUbesat solar polarimeter (CUSP). In Proceedings of the Hard X-Ray, Gamma-Ray, and Neutron Detector Physics XXVII, San Diego, CA, USA, 4–6 August 2025; Cherepy, N.J., Fiederle, M., James, R.B., Eds.; International Society for Optics and Photonics, SPIE: Bellingham, WA, USA, 2025; Volume 13621, p. 1362108. [Google Scholar] [CrossRef]
- MAROC-3A ASIC Datasheet v1.1-2. Available online: https://www.weeroc.com/read_out_chips/maroc-3a/ (accessed on 12 July 2025).
- Nuclear Database (NuDat) from the Brookhaven National Laboratory. Available online: https://www.nndc.bnl.gov/nudat3/indx_dec.jsp (accessed on 12 July 2025).
- De Angelis, N.; Cadoux, F.; Husi, C.; Kole, M.; Mianowski, S. Optimizing the light output of a plastic scintillator and SiPM based detector through optical characterization and simulation: A case study for POLAR-2. J. Instrum. 2025, 20, P02010. [Google Scholar] [CrossRef]
- Hamamatsu PhotoMultiplier Tubes R7600U Series datasheet.
- Hamamatsu Si APD S8664 series datasheet.
- SKIROC-2A ASIC Datasheet v0.2. Available online: https://www.weeroc.com/read_out_chips/skiroc-2a/ (accessed on 30 December 2025).
- Alimenti, A.; Cologgi, F.; Fabiani, S.; Torokhtii, K.; Silva, E.; Del Monte, E.; Baffo, I.; Bonomo, S.; Brienza, D.; Campana, R.; et al. Design and Test of a Calibration System for Avalanche Photodiodes Used in X-Ray Compton Polarimeters for Space. Sensors 2024, 24, 8016. [Google Scholar] [CrossRef] [PubMed]
- Thompson, A.; Lindau, I.; Attwood, D.; Liu, Y.; Gullikson, E.; Pianetta, P.; Howells, M.; Robinson, A.; Kim, K.J.; Scofield, J.; et al. X-Ray Data Booklet; Center for X-Ray Optics and Advanced Light Source, Lawrence Berkeley National Laboratory, University of California: Berkeley, CA, USA, 2009. [Google Scholar]
- Abbene, L.; Iniewski, K.K. High-Z Materials for X-Ray Detection: Material Properties and Characterization Techniques; Springer Nature: Berlin/Heidelberg, Germany, 2023. [Google Scholar]
- Bozzo, E.; Amati, L.; Baumgartner, W.; Chang, T.C.; Cordier, B.; De Angelis, N.; Doi, A.; Feroci, M.; Froning, C.; Gaskin, J.; et al. Future Perspectives for Gamma-ray Burst Detection from Space. Universe 2024, 10, 187. [Google Scholar] [CrossRef]
- De Angelis, N. Addressing Selected Gamma-Ray Burst Science Topics with Future Space Instruments. arXiv 2025, arXiv:2510.00707. [Google Scholar] [CrossRef]















| Scintillator Material | Spectral Compatibility (p.e./opt.ph.) | Scintillation Efficiency (opt.ph./1 MeV e−) | Light Yield (p.e./keV) |
|---|---|---|---|
| EJ-200 | 0.35 | 10,000 | 1.036 |
| EJ-204 | 0.37 | 10,400 | 1.142 |
| EJ-208 | 0.33 | 9200 | 0.913 |
| EJ-212 | 0.34 | 10,000 | 1.019 |
| EJ-228 | 0.38 | 10,200 | 1.152 |
| EJ-230 | 0.38 | 9700 | 1.096 |
| EJ-244(M) | 0.33 | 8600 | 0.854 |
| EJ-248(M) | 0.34 | 9200 | 0.950 |
| PMT Bias Voltage (V) | 798 | 840 | 886 |
|---|---|---|---|
| PMT gain () [21] | 1.99 ± 0.05 | 2.95 ± 0.05 | 4.43 ± 0.05 |
| Energy (keV) calibrated with ref. HV = 798 V | 23.108 | 34.20 | 51.40 |
| Energy (keV) calibrated with ref. HV = 840 V | 15.61 | 23.108 | 34.73 |
| Energy (keV) calibrated with ref. HV = 886 V | 10.39 | 15.37 | 23.108 |
| Measured peak (ADC) | |||
| Energy threshold (762 ADC) (keV) | 7.91 | 5.34 | 3.55 |
| Upper energy boundary (4096 ADC) (keV) | 54.77 | 37.01 | 24.62 |
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De Angelis, N.; Kumar, A.; Fabiani, S.; Del Monte, E.; Costa, E.; Lombardi, G.; Rubini, A.; Soffitta, P.; Alimenti, A.; Campana, R.; et al. Spectral Performance of Single-Channel Plastic and GAGG Scintillator Bars of the CUbesat Solar Polarimeter (CUSP). Particles 2026, 9, 4. https://doi.org/10.3390/particles9010004
De Angelis N, Kumar A, Fabiani S, Del Monte E, Costa E, Lombardi G, Rubini A, Soffitta P, Alimenti A, Campana R, et al. Spectral Performance of Single-Channel Plastic and GAGG Scintillator Bars of the CUbesat Solar Polarimeter (CUSP). Particles. 2026; 9(1):4. https://doi.org/10.3390/particles9010004
Chicago/Turabian StyleDe Angelis, Nicolas, Abhay Kumar, Sergio Fabiani, Ettore Del Monte, Enrico Costa, Giovanni Lombardi, Alda Rubini, Paolo Soffitta, Andrea Alimenti, Riccardo Campana, and et al. 2026. "Spectral Performance of Single-Channel Plastic and GAGG Scintillator Bars of the CUbesat Solar Polarimeter (CUSP)" Particles 9, no. 1: 4. https://doi.org/10.3390/particles9010004
APA StyleDe Angelis, N., Kumar, A., Fabiani, S., Del Monte, E., Costa, E., Lombardi, G., Rubini, A., Soffitta, P., Alimenti, A., Campana, R., Centrone, M., De Cesare, G., Di Cosimo, S., Di Persio, G., Lacerenza, A., Loffredo, P., Minervini, G., Muleri, F., Romano, P., ... Zazza, C. (2026). Spectral Performance of Single-Channel Plastic and GAGG Scintillator Bars of the CUbesat Solar Polarimeter (CUSP). Particles, 9(1), 4. https://doi.org/10.3390/particles9010004

