The key to realize non-moving-element optical zooming lies in VCM (variable curvature mirror). In order to obtain a large optical magnification, VCM should be capable of providing a large center deflection and this requires that the mirror material should be robust enough, require less force to deform and have a high ultimate strength. In this paper, CFRP (carbon-fiber-reinforced-polymer) is selected as the mirror material and a prototype VCM has been fabricated. With diameter of 100mm, thickness of 2mm and initial curvature radius of 1740mm, this VCM can provide a center deflection approaching nearly 23um, which proves the feasibility of CFRP in constructing VCM. Compared with the work reported in [Proc. of SPIE, 8725, 87250W, 2013], the c...
<p> Zoom mirror is a kind of active optical component that can change its curvature radius dynamica...
We present results from our current project to develop an alternative substrate for large deformable...
In this work, we are aiming to reduce the mass of large precision mirrors for space missions by usin...
In recent years, how to eliminate moving elements while realizing optical zoom imaging has been paid...
In recent years, optical zoom imaging without moving elements has received much attention. The key t...
<p> Variable curvature mirror (VCM) can change its curvature radius dynamically and is usually used...
Variable curvature mirror (VCM) is a long-history technique used to correct the defocus and spherica...
<p> In recent years, a novel optical zooming technique has been paid much attention. With the help ...
Research into novel technologies for active and adaptive optics is essential to ensure the required ...
Due to low density, high specific stiffness, and low thermal expansion, carbon fiber reinforced plas...
Adaptive optics performance is essential for achieving the demanding science goals set for the groun...
<p>Due to low density, high specific stiffness, and low thermal expansion, carbon fiber reinforced p...
Adaptive optics performance is essential for achieving the demanding science goals set for the groun...
Abstract As carbon fiber reinforced polymer (CFRP) material has been developed and demonstrated as a...
<p> Due to low density, high stiffness, low thermal expansion coefficient, duplicate molding, etc.,...
<p> Zoom mirror is a kind of active optical component that can change its curvature radius dynamica...
We present results from our current project to develop an alternative substrate for large deformable...
In this work, we are aiming to reduce the mass of large precision mirrors for space missions by usin...
In recent years, how to eliminate moving elements while realizing optical zoom imaging has been paid...
In recent years, optical zoom imaging without moving elements has received much attention. The key t...
<p> Variable curvature mirror (VCM) can change its curvature radius dynamically and is usually used...
Variable curvature mirror (VCM) is a long-history technique used to correct the defocus and spherica...
<p> In recent years, a novel optical zooming technique has been paid much attention. With the help ...
Research into novel technologies for active and adaptive optics is essential to ensure the required ...
Due to low density, high specific stiffness, and low thermal expansion, carbon fiber reinforced plas...
Adaptive optics performance is essential for achieving the demanding science goals set for the groun...
<p>Due to low density, high specific stiffness, and low thermal expansion, carbon fiber reinforced p...
Adaptive optics performance is essential for achieving the demanding science goals set for the groun...
Abstract As carbon fiber reinforced polymer (CFRP) material has been developed and demonstrated as a...
<p> Due to low density, high stiffness, low thermal expansion coefficient, duplicate molding, etc.,...
<p> Zoom mirror is a kind of active optical component that can change its curvature radius dynamica...
We present results from our current project to develop an alternative substrate for large deformable...
In this work, we are aiming to reduce the mass of large precision mirrors for space missions by usin...