The standard one-dimensional diffusion equation is extended to include nonlocal temporal and spatial medium responses. How such nonlocal effects arise in a photopolymer is discussed. It is argued that assuming rapid polymer chain growth, any nonlocal temporal response can be dealt with so that the response can be completely understood in terms of a steady-state nonlocal spatial response. The resulting nonlocal diffusion equation is then solved numerically, in low-harmonic approximation, to describe grating formation. The effects of the diffusion rate, the rate of polymerization, and a new parameter, the nonlocal response length, are examined by using the predictions of the model. By applying the two-wave coupled-wave model, assuming a linea...
Paper presented at Frontiers in Optics (FiO), Tucson, Arizona, October 16, 2005We describe holograph...
An extended model based on nonlocal polymerization-driven diffusion model is derived by introducing ...
In part I of this paper the non-local photo-polymerization driven diffusion model was extended to i...
The one-dimensional diffusion equation governing holographic grating formation in photopolymers, whi...
The nonlocal polymerization driven diffusion model is used to describe holographic grating formation...
The nonlocal polymerization-driven diffusion model (NPDD) has been shown to predict high spatial fre...
We examine the evolution of the refractive index modulation when recording gratings in an acrylamide...
The kinetics of photosensitive polymer holographic recording materials are examined assuming a mater...
The kinetics of photosensitive polymer holographic recording materials are examined assuming a mater...
The development of a theoretical model of the processes present during the formation of a holograph...
The photochemical processes present during free-radical-based holographic grating formation are exam...
The nonlocal diffusion model proposed by Sheridan and coworkers has provided a useful interpretation...
For the first time to our knowledge, a detailed theoretical basis is provided for the well-known inv...
One of the key predictions of the nonlocal photopolymerization driven diffusion (NPDD) model is that...
Poster presented at Optical Data Storage (ODS) Portland, Oregon, May 20, 2007A generalized non-loca...
Paper presented at Frontiers in Optics (FiO), Tucson, Arizona, October 16, 2005We describe holograph...
An extended model based on nonlocal polymerization-driven diffusion model is derived by introducing ...
In part I of this paper the non-local photo-polymerization driven diffusion model was extended to i...
The one-dimensional diffusion equation governing holographic grating formation in photopolymers, whi...
The nonlocal polymerization driven diffusion model is used to describe holographic grating formation...
The nonlocal polymerization-driven diffusion model (NPDD) has been shown to predict high spatial fre...
We examine the evolution of the refractive index modulation when recording gratings in an acrylamide...
The kinetics of photosensitive polymer holographic recording materials are examined assuming a mater...
The kinetics of photosensitive polymer holographic recording materials are examined assuming a mater...
The development of a theoretical model of the processes present during the formation of a holograph...
The photochemical processes present during free-radical-based holographic grating formation are exam...
The nonlocal diffusion model proposed by Sheridan and coworkers has provided a useful interpretation...
For the first time to our knowledge, a detailed theoretical basis is provided for the well-known inv...
One of the key predictions of the nonlocal photopolymerization driven diffusion (NPDD) model is that...
Poster presented at Optical Data Storage (ODS) Portland, Oregon, May 20, 2007A generalized non-loca...
Paper presented at Frontiers in Optics (FiO), Tucson, Arizona, October 16, 2005We describe holograph...
An extended model based on nonlocal polymerization-driven diffusion model is derived by introducing ...
In part I of this paper the non-local photo-polymerization driven diffusion model was extended to i...