Gravitational lensing of the cosmic microwave background (CMB) polarization field has been recognized as a potentially valuable probe of the cosmological density field. We apply likelihood-based techniques to the problem of lensing of CMB polarization and show that if the B-mode polarization is mapped, then likelihood-based techniques allow significantly better lensing reconstruction than is possible using the previous quadratic estimator approach. With this method the ultimate limit to lensing reconstruction is not set by the lensed CMB power spectrum. Second-order corrections are known to produce a curl component of the lensing deflection field that cannot be described by a potential; we show that this does not significantly affect the re...
Gravitational lensing of the cosmic microwave background by large‐scale structure in the late univer...
Over the past decade, the gravitational lensing of the Cosmic Microwave Background (CMB) has become ...
International audienceWe develop a method of reconstructing the lensing field from lensed CMB temper...
Gravitational lensing of the cosmic microwave background (CMB) polarization field has been recognize...
Weak gravitational lensing by the intervening large-scale structure of the Universe induces high-ord...
Weak gravitational lensing by intervening large-scale structure induces a distinct signature in the ...
Weak gravitational lensing by an intervening large-scale structure induces a distinct signature in t...
Gravitational lensing of the cosmic microwave background (CMB) is a valuable cosmological signal tha...
Detailed measurements of the CMB lensing signal are an important scientific goal of ongoing groundba...
Future experiments will produce high-resolution temperature maps of the cosmic microwave background ...
We discuss the possibility to directly reconstruct the cosmic microwave background (CMB) polarizatio...
Precise reconstruction of the cosmic microwave background lensing potential can be achieved with dee...
Gravitational lensing of the Cosmic Microwave Background (CMB) measures all the matter content in th...
The effect of weak gravitational lensing on the cosmic microwave background (CMB) temperature anisot...
One of the primary scientific targets of current and future CMB polarization experiments is the sear...
Gravitational lensing of the cosmic microwave background by large‐scale structure in the late univer...
Over the past decade, the gravitational lensing of the Cosmic Microwave Background (CMB) has become ...
International audienceWe develop a method of reconstructing the lensing field from lensed CMB temper...
Gravitational lensing of the cosmic microwave background (CMB) polarization field has been recognize...
Weak gravitational lensing by the intervening large-scale structure of the Universe induces high-ord...
Weak gravitational lensing by intervening large-scale structure induces a distinct signature in the ...
Weak gravitational lensing by an intervening large-scale structure induces a distinct signature in t...
Gravitational lensing of the cosmic microwave background (CMB) is a valuable cosmological signal tha...
Detailed measurements of the CMB lensing signal are an important scientific goal of ongoing groundba...
Future experiments will produce high-resolution temperature maps of the cosmic microwave background ...
We discuss the possibility to directly reconstruct the cosmic microwave background (CMB) polarizatio...
Precise reconstruction of the cosmic microwave background lensing potential can be achieved with dee...
Gravitational lensing of the Cosmic Microwave Background (CMB) measures all the matter content in th...
The effect of weak gravitational lensing on the cosmic microwave background (CMB) temperature anisot...
One of the primary scientific targets of current and future CMB polarization experiments is the sear...
Gravitational lensing of the cosmic microwave background by large‐scale structure in the late univer...
Over the past decade, the gravitational lensing of the Cosmic Microwave Background (CMB) has become ...
International audienceWe develop a method of reconstructing the lensing field from lensed CMB temper...