The transport of intensity equation (TIE) is a two-dimensional second order elliptic partial differential equation that must be solved under appropriate boundary conditions. However, the boundary conditions are difficult to obtain in practice. The fast Fourier transform (FFT) based TIE solutions are widely adopted for its speed and simplicity. However, it implies periodic boundary conditions, which lead to significant boundary artifacts when the imposed assumption is violated. In this work, TIE phase retrieval is considered as an inhomogeneous Neumann boundary value problem with the boundary values experimentally measurable around a hard-edged aperture, without any assumption or prior knowledge about the test object and the setup. The analy...
We propose an alternative method for solving the Transport of Intensity equation (TIE) from a stack ...
Phase information plays an important role in three-dimensional (3D) imaging. Digital holography (DH)...
International audienceSeveral methods of phase retrieval for in line phase tomography have already b...
The transport of intensity equation (TIE) is a two-dimensional second order elliptic partial differe...
Phase is not easy to detect directly as intensity, but sometimes it contains the really desired info...
Boundary conditions play a crucial role in the solution of the transport of intensity equation (TIE)...
The commonly known transport of intensity equation (TIE) was proposed by Teague as a method for the ...
The transport-of-intensity equation (TIE) has been proven as a standard approach for phase retrieva...
The commonly known transport of intensity equation (TIE) was proposed by Teague as a method for the ...
The transport of intensity equation (TIE) has long been recognized as a quantitative method for phas...
The problem of phase retrieval from intensity measurements plays an important role in many fields of...
Phase is an important component of an optical wavefield bearing the information of the refractive in...
The transport of intensity equation (TIE) is the basis of a powerful non-interferometric technique f...
We propose an alternative method for solving the Transport of Intensity equation (TIE) from a stack ...
We propose an alternative method for solving the Transport of Intensity equation (TIE) from a stack ...
We propose an alternative method for solving the Transport of Intensity equation (TIE) from a stack ...
Phase information plays an important role in three-dimensional (3D) imaging. Digital holography (DH)...
International audienceSeveral methods of phase retrieval for in line phase tomography have already b...
The transport of intensity equation (TIE) is a two-dimensional second order elliptic partial differe...
Phase is not easy to detect directly as intensity, but sometimes it contains the really desired info...
Boundary conditions play a crucial role in the solution of the transport of intensity equation (TIE)...
The commonly known transport of intensity equation (TIE) was proposed by Teague as a method for the ...
The transport-of-intensity equation (TIE) has been proven as a standard approach for phase retrieva...
The commonly known transport of intensity equation (TIE) was proposed by Teague as a method for the ...
The transport of intensity equation (TIE) has long been recognized as a quantitative method for phas...
The problem of phase retrieval from intensity measurements plays an important role in many fields of...
Phase is an important component of an optical wavefield bearing the information of the refractive in...
The transport of intensity equation (TIE) is the basis of a powerful non-interferometric technique f...
We propose an alternative method for solving the Transport of Intensity equation (TIE) from a stack ...
We propose an alternative method for solving the Transport of Intensity equation (TIE) from a stack ...
We propose an alternative method for solving the Transport of Intensity equation (TIE) from a stack ...
Phase information plays an important role in three-dimensional (3D) imaging. Digital holography (DH)...
International audienceSeveral methods of phase retrieval for in line phase tomography have already b...