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Large Scale Polarization Explorer

Project
The LSPE is a balloon-borne mission aimed at measuring the polarization of the Cosmic Microwave Background (CMB) at large angular scales, and in particular to constrain the curl component of CMB polarization (B-modes) produced by tensor perturbations generated during cosmic inflation, in the very early universe. Its primary target is to improve the limit on the ratio of tensor to scalar perturbations amplitudes down to r = 0.03, at 99.7% confidence. A second target is to produce wide maps of foreground polarization generated in our Galaxy by synchrotron emission and interstellar dust emission. These will be important to map Galactic magnetic fields and to study the properties of ionized gas and of diffuse interstellar dust in our Galaxy. The mission is optimized for large angular scales, with coarse angular resolution (around 1.5 degrees FWHM), and wide sky coverage (25% of the sky). The payload will fly in a circumpolar long duration balloon mission during the polar night. Using the Earth as a giant solar shield, the instrument will spin in azimuth, observing a large fraction of the northern sky. The payload will host two instruments. An array of coherent polarimeters using cryogenic HEMT amplifiers will survey the sky at 43 and 90 GHz. An array of bolometric polarimeters, using large throughput multi-mode bolometers and rotating Half Wave Plates (HWP), will survey the same sky region in three bands at 95, 145 and 245 GHz. The wide frequency coverage will allow optimal control of the polarized foregrounds, with comparable angular resolution at all frequencies.
  • Academic Signature
  • Overview
  • Research Areas

Academic Signature

Il servizio di classificazione ACADEMIC SIGNATURE è IN BETA TESTING e i risultati potrebbero non essere corretti

Academic Signature (13)

Galactic magnetic fields
Astronomy
Galactic magnetic fields
Astrophysics
Galactic magnetic fields
Cosmic magnetic fields
Synchrotron radiation
Electromagnetic theory
Cosmic background radiation
Electromagnetic waves
Synchrotron radiation
Electromagnetic waves
Cosmic background radiation
Extraterrestrial radiation
Galactic magnetic fields
Magnetic fields
Cosmic background radiation
Physics
Galactic magnetic fields
Physics
Cosmic background radiation
Radiation
Cosmic background radiation
Waves
Synchrotron radiation
Waves

Overview

Contributors (4)

MENNELLA ANIELLO   Scientific Manager  
BERSANELLI MARCO RINALDO FEDELE   Participant  
MAINO DAVIDE   Participant  
TOMASI MAURIZIO   Participant  

Departments involved

Dipartimento di Fisica Aldo Pontremoli   Principale  

Type

ASI - AGENZIA SPAZIALE ITALIANA

Funder

AGENZIA SPAZIALE ITALIANA
External Organization Funding Organization

Date/time interval

April 1, 2011 - March 31, 2014

Project duration

36 months

Research Areas

Concepts (4)


72.1 - RICERCA E SVILUPPO SPERIMENTALE NEL CAMPO DELLE SCIENZE NATURALI E DELL'INGEGNERIA

PE9_14 - Cosmology - (2013)

PE9_15 - Space Sciences - (2013)

PE9_17 - Instrumentation - telescopes, detectors and techniques - (2013)

Keywords (10)

  • ascending
  • descending
COSMIC MICROWAVE BACKGROUND
COSMOLOGIA OSSERVATIVA
INSTRUMENTATION
OBSERVATIONNAL COSMOLOGY
RADIAZIONE DI FONDO COSMICO
RADIO ASTRONOMY
RADIOASTRONOMIA
RADIOMETER RECEIVER
RICEVITORI COERENTI A MICROONDE
TELESCOPI E STRUMENTI OPERANTI DALLO SPAZIO
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