BaR-SPOrt (Balloon-borne Radiometers for Sky Polarisation Observations) is an experiment to measure the linearly polarized emission of sky patches at 32 and 90 GHz with sub-degree angular resolution. It is equipped with high sensitivity correlation polarimeters for simultaneous detection of both the U and Q stokes parameters of the incident radiation. On-axis telescope is used to observe angular scales where the expected polarization of the Cosmic Microwave Background (CMBP) peaks. This project shares most of the know-how and sophisticated technology developed for the SPOrt experiment onboard the International Space Station. The payload is designed to flight onboard long duration stratospheric balloons both in the Northern and Southern hemi...
We discuss MAXIPOL, a bolometric balloon-borne experiment designed to measure the E-mode polarizatio...
International audiencePOLARBEAR-2 (PB-2) is a cosmic microwave background (CMB) polarization experim...
New technology has rapidly advanced the field of observational cosmology over the last 30 years. Th...
BaR-SPOrt (Balloon-borne Radiometers for Sky Polarisation Observations) is an experiment to measure ...
BaR-SPOrt (Balloon-borne Radiometers for Sky Polarisation Observations) is an experiment to measure ...
BaR-SPOrt, funded by ASI (Italian Space Agency), is a 32 (90) GHz balloon-borne correlation polarime...
The BaR-SPOrt experiment is designed to measure the E-mode power spectrum of the Cosmic Microwave Ba...
The BaR-SPOrt experiment is designed to measure the E-mode power spectrum of the Cosmic Microwave ...
The BaR-SPOrt (Balloon-Borne Radiometers for Sky Polarization Observations) experiment, a program o...
The Sky Polarization Observatory is an experiment selected by ESA for the Early Opportunity Phase on...
SPOrt (Sky Polarization Observatory) is a space experiment to be flown on the International Space St...
International audienceThe Cosmic Microwave Background (CMB) radiation offers a unique window into th...
We discuss MAXIPOL, a bolometric balloon-borne experiment designed to measure the E-mode polarizatio...
POLARBEAR is a Cosmic Microwave Background (CMB) polarization experiment that will measure the CMB p...
We discuss MAXIPOL, a bolometric balloon-borne experiment designed to measure the E-mode polarizatio...
We discuss MAXIPOL, a bolometric balloon-borne experiment designed to measure the E-mode polarizatio...
International audiencePOLARBEAR-2 (PB-2) is a cosmic microwave background (CMB) polarization experim...
New technology has rapidly advanced the field of observational cosmology over the last 30 years. Th...
BaR-SPOrt (Balloon-borne Radiometers for Sky Polarisation Observations) is an experiment to measure ...
BaR-SPOrt (Balloon-borne Radiometers for Sky Polarisation Observations) is an experiment to measure ...
BaR-SPOrt, funded by ASI (Italian Space Agency), is a 32 (90) GHz balloon-borne correlation polarime...
The BaR-SPOrt experiment is designed to measure the E-mode power spectrum of the Cosmic Microwave Ba...
The BaR-SPOrt experiment is designed to measure the E-mode power spectrum of the Cosmic Microwave ...
The BaR-SPOrt (Balloon-Borne Radiometers for Sky Polarization Observations) experiment, a program o...
The Sky Polarization Observatory is an experiment selected by ESA for the Early Opportunity Phase on...
SPOrt (Sky Polarization Observatory) is a space experiment to be flown on the International Space St...
International audienceThe Cosmic Microwave Background (CMB) radiation offers a unique window into th...
We discuss MAXIPOL, a bolometric balloon-borne experiment designed to measure the E-mode polarizatio...
POLARBEAR is a Cosmic Microwave Background (CMB) polarization experiment that will measure the CMB p...
We discuss MAXIPOL, a bolometric balloon-borne experiment designed to measure the E-mode polarizatio...
We discuss MAXIPOL, a bolometric balloon-borne experiment designed to measure the E-mode polarizatio...
International audiencePOLARBEAR-2 (PB-2) is a cosmic microwave background (CMB) polarization experim...
New technology has rapidly advanced the field of observational cosmology over the last 30 years. Th...