1. Adam, W., Bergauer, T., Deldicque, C., Erö, J., Fruehwirth, R., Jeitler, M., Kastner, K., Kostner, S., Neumeister, N., Padrta, M., Porth, P., Rohringer, H., Sakulin, H., Strauss, J., Taurok, A., Walzel, G., Wulz, C. E., Lowette, S., van de Vyver, B., de Lentdecker, G., Vanlaer, P., Delaere, C., Lemaitre, V., Ninane, A., van der Aa, O., Damgov, J., Karimäki, V., Kinnunen, R., … Smith, W. H. (2006). The CMS high level trigger. European Physics Journal C, 46, 605–667.
2. Allanach, B. B., & Haber, H. E. (2019) Supersymmetry, Part I (Theory). Available at the Particle Data Group (PDG) website: https://pdg.lbl.gov/2019/reviews/rpp2019-rev-susy-1-theory.pdf
3. Barrie, N. D., Sugamoto, A., Talia, M., & Yamashita, K. (2021). Searching for monopoles via monopolium multiphoton decays. Nuclear Physics B, 972, 115564.
4. Buchmuller, O., & de Jong, P. (2020). Supersymmetry, Part II (Experiment). Available at the Particle Data Group (PDG) website: https://pdg.lbl.gov/2020/reviews/rpp2020-rev-susy-2-experiment.pdf
5. CERN. (2022). Supersymmetry predicts a partner particle for each particle in the Standard Model, to help explain why particles have mass. Available at: https://home.cern/science/physics/supersymmetry