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Measurement ofCPasymmetries inB0→K0π0decays
Fujikawa, M.,Yusa, Y.,Dalseno, J.,Hazumi, M.,Sumisawa, K.,Aihara, H.,Arinstein, K.,Aulchenko, V.,Aushev, T.,Aziz, T.,Bakich, A. M.,Balagura, V.,Barberio, E.,Belous, K.,Bhardwaj, V.,Bischofberger, M.,B American Physical Society 2010 PHYSICAL REVIEW D - Vol.81 No.1
Oguri, S.,Choi, J.,Damayanthi, T.,Hattori, M.,Hazumi, M.,Ishitsuka, H.,Karatsu, K.,Mima, S.,Minowa, M.,Nagasaki, T. Springer Science + Business Media 2016 Journal of low temperature physics Vol.184 No.3
<P>Cosmic microwave background (CMB) is an important source of information about the origin of our universe. In particular, odd-parity large angular scale patterns in the CMB polarization, the primordial B-modes, are strong evidence for an inflationary universe, related to the accelerating expansion of the metric. We are developing a unique telescope, GroundBIRD, to take CMB polarization measurements. The telescope combines novel techniques: high-speed rotation scanning, cold optics, and microwave kinetic inductance detectors (MKIDs). We evaluated the response of MKIDs on the rotation stage. Method of shielding from the geo-magnetic field is established. We have also developed a receiver cryostat. We are able to maintain a sufficient cold status for observations on the optical configuration. We plan to start commissioning the system by observing CMB in Japan in 2015-2016. We will then deploy GroundBIRD in the Canary Islands for further scientific observations.</P>