Donald J. Schertler
University of Rochester
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Publication
Featured researches published by Donald J. Schertler.
Optical Science and Technology, the SPIE 49th Annual Meeting | 2004
Tasso R. M. Sales; Stephen Chakmakjian; Donald J. Schertler; G. Michael Morris
We propose and demonstrate the use of Engineered Diffusers for control and distribution of LED light for general lighting applications. These diffusers are based on refractive microstructures and enable the efficient use of energy by controlling light propagation and directing it to specific regions of space. The microstructures are generally microlens-based arrays with each microlens elements individually designed to meet the desired scatter properties. In addition to light control, Engineered Diffusers can be used for RGB mixing to produce white light with variable color temperature, depending on the RGB content of the source. A single Engineered Diffuser component can be used for efficient color mixing and illumination control. We also discuss the fabrication of Engineered Diffusers by means of a single-point laserwriting method with capability to manufacture the deep refractive structures needed for LED beam shaping.
Proceedings of SPIE | 2006
Tasso R. M. Sales; Donald J. Schertler; Stephen Chakmakjian
We demonstrate the application of deterministic microlens diffusers to generate Lambertian scatter in transmission with high efficiency. Two identical surface diffuser elements are used in tandem to spread light with constant radiance. Design methods are discussed and experimental demonstration is presented.
Proceedings of SPIE, the International Society for Optical Engineering | 2007
G. Michael Morris; Tasso R. M. Sales; Stephen Chakmakjian; Donald J. Schertler
In the past few years the microdisplay-based projection television market has been quickly spreading over what used to be the domain of CRT technology. The demand for larger display sizes and improved image quality, together with more accessible pricing is aggressively driving the transition to microdisplays. The screen is the component of the projection system that directly conveys the visual information to the user, responsible for distributing the luminous energy from the light engine. However, the projection screen is far from a simple diffuser and todays performance requirements for display systems require sophisticated screens to meet the resolution, transmission efficiency, and contrast required by visual displays.
Proceedings of SPIE | 2006
Donald J. Schertler; Stephen Chakmakjian; Tasso R. M. Sales; G. Michael Morris
Lightguide devices are commonly used in a large number of applications such as light-delivery systems, illumination, and displays. The general approach is to outcouple light from the lightguide without concern for its propagation properties within the guiding material. We introduce the concept of a lightguide with controlled numerical-aperture as it propagates within the guiding substrate and demonstrate the advantages with this approach, compared to other methods commonly used. We also demonstrate the application of our lightguide technology for general illumination with controlled light distribution and high efficiency.
Archive | 2009
Stephen Chakmakjian; Donald J. Schertler; Tasso R. M. Sales; G. Michael Morris
Archive | 1999
Nicholas George; Donald J. Schertler
Archive | 2013
Donald J. Schertler
Proceedings of SPIE | 2006
Donald J. Schertler; Tasso R. M. Sales; Stephen Chakmakjian; G. Michael Morris
publisher | None
author
Imaging and Applied Optics 2018 (3D, AO, AIO, COSI, DH, IS, LACSEA, LS&C, MATH, pcAOP) | 2018
Donald J. Schertler; Amber Betzold; Steve Chakmakjian; Jim Northup; G. Michael Morris; Tasso R. M. Sales