Now showing items 1-3 of 3

    • Adachi, S.; Aguilar Faúndez, M. A. O.; Arnold, K.; Baccigalupi, C.; Barron, D.; Beck, D.; Bianchini, F.; Chapman, S.; Cheung, K.; Chinone, Y.; Crowley, K.; Dobbs, M.; El-Bouhargani, H.; Elleflot, T.; Errard, J.; Fabbian, G.; Feng, C.; Fujino, T.; Galitzki, N.; Goeckner Wald, N.; Groh, J.; Hall, G.; Hasegawa, M.; Hazumi, M.; Hirose, H.; Jaffe, A. H.; Jeong, O; Kaneko, D.; Katayama, N.; Keating, B.; Kikuchi, S.; Kisner, T.; Kusaka, A.; Lee, A. T.; León, D.; Linder, E.; Lowry, L. N.; Matsuda, F.; Matsumura, T.; Minami, Y.; Navaroli, M.; Nishino, H.; Pham, A. T. P.; Poletti, D.; Reichardt, C. L.; Segawa, Y.; Siritanasak, P.; Tajima, O.; Takakura, S.; Takatori, S.; Tanabe, D.; Tsai, C.; Verges, C.; Westbrook, B.; Zhou, Y. (IOP, 2020)
      We report a measurement of the E-mode polarization power spectrum of the cosmic microwave background (CMB) using 150 GHz data taken from 2014 July to 2016 December with the POLARBEAR experiment. We reach an effective ...
    • Favole, Ginevra; Granett, Benjamin R.; Silva Lafaurie, Javier Ignacio; Sapone, Domenico (Oxford, 2021)
      The jackknife method gives an internal covariance estimate for large-scale structure surveys and allows model-independent errors on cosmological parameters. Using the SDSS-III BOSS CMASS sample, we study how the jackknife ...
    • Hawkins, E.; Frame, D.; Harrington, L.; Joshi, M.; King, A.; Rojas Corradi, María Heloísa; Sutton, R. (American Geophysical Union, 2020)
      Changes in climate are usually considered in terms of trends or differences over time. However, for many impacts requiring adaptation, it is the amplitude of the change relative to the local amplitude of climate variability ...