We experimentally implement a direct, non-iterative method for recovering the complex wave in the exit-surface plane of a coherently illuminated object. The form of illumination is subject to certain conditions. By satisfying these conditions, the complex exit-surface wave is directly recovered from a single far-field intensity pattern, by solving a set of linear equations. These linear equations, whose coefficients depend on the incident illumination, are obtained by analyzing the autocorrelation function of the exit-surface wave. This autocorrelation is constructed by taking the inverse Fourier transform of the diffraction pattern. We introduce a preconditioning step, for the system of linear equations, which improves the robustness of th...
Coherent diffractive imaging (CDI) has been widely applied in the physical and biological sciences u...
The resolution of single-shot coherent diffractive imaging at X-ray free-electron laser facilities i...
The resolution of single-shot coherent diffractive imaging at X-ray free-electron laser facilities i...
We experimentally implement a direct, non-iterative method for recovering the complex wave in the ex...
In this review we will consider the retrieval of the wave at the exit surface of an object illuminat...
In this review we will consider the retrieval of the wave at the exit surface of an object illuminat...
We introduce a fast, dependable algorithm to solve for the exit surface wave of a specimen in cohere...
We introduce a fast, dependable algorithm to solve for the exit surface wave of a specimen in cohere...
We introduce a fast, dependable algorithm to solve for the exit surface wave of a specimen in cohere...
We propose a direct, non-iterative method for the exact recovery of the complex wave in the exit-sur...
We propose a direct, non-iterative method for the exact recovery of the complex wave in the exit-sur...
The potential of coherent diffractive imaging has in recent years become well recognized. In this te...
Recently, we have proposed a coherent diffractive imaging using a noniterative phase retrieval metho...
Recently, we have proposed a coherent diffractive imaging using a noniterative phase retrieval metho...
© 2013 Dr. Andrew James MorganThis thesis examines methods for obtaining the full complex wave-field...
Coherent diffractive imaging (CDI) has been widely applied in the physical and biological sciences u...
The resolution of single-shot coherent diffractive imaging at X-ray free-electron laser facilities i...
The resolution of single-shot coherent diffractive imaging at X-ray free-electron laser facilities i...
We experimentally implement a direct, non-iterative method for recovering the complex wave in the ex...
In this review we will consider the retrieval of the wave at the exit surface of an object illuminat...
In this review we will consider the retrieval of the wave at the exit surface of an object illuminat...
We introduce a fast, dependable algorithm to solve for the exit surface wave of a specimen in cohere...
We introduce a fast, dependable algorithm to solve for the exit surface wave of a specimen in cohere...
We introduce a fast, dependable algorithm to solve for the exit surface wave of a specimen in cohere...
We propose a direct, non-iterative method for the exact recovery of the complex wave in the exit-sur...
We propose a direct, non-iterative method for the exact recovery of the complex wave in the exit-sur...
The potential of coherent diffractive imaging has in recent years become well recognized. In this te...
Recently, we have proposed a coherent diffractive imaging using a noniterative phase retrieval metho...
Recently, we have proposed a coherent diffractive imaging using a noniterative phase retrieval metho...
© 2013 Dr. Andrew James MorganThis thesis examines methods for obtaining the full complex wave-field...
Coherent diffractive imaging (CDI) has been widely applied in the physical and biological sciences u...
The resolution of single-shot coherent diffractive imaging at X-ray free-electron laser facilities i...
The resolution of single-shot coherent diffractive imaging at X-ray free-electron laser facilities i...