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Cemented Zero Order Waveplate

Cemented zero order waveplate is constructed by two quartz plates with their fast axis crossed, the two plates are cemented by UV epoxy. The difference in thickness between the two plates determines the retardation. Zero order waveplates offer a substantially lower dependence on temperature and wavelength change than multi order waveplates.
· Cemented by Epoxy
· Thickness 1.5~2mm
· Double Retardation Plates
· Broad Spectral Bandwidth
· Wide Temperature bandwidth
· AR coated and Mounted
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Detail

Cemented zero order waveplate is constructed by two quartz plates with their fast axis crossed, the two plates are cemented by UV epoxy. The difference in thickness between the two plates determines the retardation. Zero order waveplates offer a substantially lower dependence on temperature and wavelength change than multi order waveplates.

· Cemented by Epoxy

· Thickness 1.5~2mm

· Double Retardation Plates

· Broad Spectral Bandwidth

· Wide Temperature bandwidth

· AR coated and Mounted


Cemented Zero Order Waveplate specification or based on clients' requirments


1.Material:

Quartz

2.Diameter Tolerance:

0/-0.1mm

3.Wavefront Distortion :

λ/8@632.8nm

4.Retardation Tolerance:

λ/300

5.Parallelism:

<1 arc second

6.Surface Quality:

20-10

7.Clear Aperture:

>90%

8.Coating:

S1&S2: R<0.2% @ wavelength or based on client requests

Standard wavelength:

266nm, 355nm,532nm, 632.8nm, 780nm,808nm, 850nm, 980nm,1064nm, 1310nm, 1480nm, 1550nm


Half Waveplates P/N#

Quarter Waveplates P/N#

WPC210

WPC410

WPC212

WPC412

WPC215

WPC415

WPC220

WPC420

WPC225

WPC425

WPC230

WPC430