

90 deg Off-Axis Parabolic Mirror, Through Hole Parallel to the Focused Beam, 2", RFL 152.4 mm, Protected Gold
WQ-THZ-OAP2612-HDesign Tools
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Overview
This is the through-hole off-axis parabolic mirror in the configuration where the hole runs parallel to the focused beam, which means it is perpendicular to the parent optical axis. Optically it is identical to the plain 2-inch 90 degree protected-gold parabola: 50.8 mm diameter, 152.4 mm reflected focal length, lambda/8 RMS figure and better than 95% average reflectance from 700 to 2000 nm.
When to choose this orientation
Pick the focused-beam orientation when the auxiliary beam has to travel along the converging or diverging side of the mirror - for example when a probe beam is introduced from behind the mirror and brought to the same focus as the terahertz beam, or when a sample needs to be viewed on axis from behind the focus. Because the hole opens toward the focal point, alignment is done against the focal spot rather than against the collimated section.
Why a reflective relay in the THz band
Off-axis parabolic mirrors are the standard way to collimate and focus terahertz radiation. Refractive optics are avoided because most materials introduce strong absorption and dispersion across the band, whereas a metal-coated reflector is achromatic from 0.1 to beyond 10 THz and adds no chirp to a single-cycle pulse. The protected gold coating stays above 95% average reflectance from 700 to 2000 nm and above 93% from 2 to 30 um, and its reflectance remains high throughout the terahertz band, so the same mirror also works for visible or near-infrared alignment.
Alignment and handling
A typical terahertz time-domain setup uses four off-axis parabolic mirrors: one to collimate the diverging beam from the emitter, one to focus onto the sample, one to recollimate after it, and a final one - usually a through-hole part - to focus onto the detection crystal. Set the beam height once and hold it across the whole table. The gold coating is soft and only lightly protected: never touch or wipe the optical face, and remove dust with dry nitrogen only.
| Hole orientation | Parallel to the focused beam (perpendicular to the parent axis) |
| Through hole | 3 mm diameter |
| Type | 90 degree off-axis parabolic mirror with central through hole |
| Substrate | Aluminium alloy 6061-T6 |
| Diameter | 50.8 mm (2 inch) |
| Clear aperture | > 90% of 50.8 mm |
| Off-axis angle | 90 deg +/- 0.02 deg |
| Reflected focal length RFL | 152.4 mm (6 inch) +/- 1% |
| Parent focal length PFL | 76.2 mm |
| Surface figure | lambda/8 RMS |
| Surface roughness | < 100 Angstrom RMS |
| Surface quality | 80/50 scratch-dig |
| Coating | Protected gold, optical face only |
| Reflectance | Ravg > 95% @ 700 - 2000 nm; > 93% @ 2 - 30 um |
| Weight | 166 g |
Product Family: THz Optics (9 variants)
| Product | SKU | Size | Clear Aperture | Operating Wavelength | |
|---|---|---|---|---|---|
| 90 deg Off-Axis Parabolic Mirror, Through Hole Parallel to the Collimated Beam, 2", RFL 152.4 mm, Protected Gold |
WQ-THZ-OAP2612-V
| — | — | — | Contact |
| THz Imaging Objective Lens, 0.1 - 30 THz |
SWT-OBJ
| — | — | — | Contact |
| High-Resistivity Silicon THz Windows |
SWT-WIN-SI
| — | — | — | Contact |
| TPX THz Windows |
SWT-WIN-TPX
| — | — | — | Contact |
| TPX THz Lens |
SWT-LENS-TPX
| — | — | — | Contact |
| HDPE THz Lens |
SWT-LENS-HDPE
| — | — | — | Contact |
| THz Filters: Bandpass, Bandstop, Low Pass and High Pass |
SWT-FILTER
| — | — | — | Contact |
| 90 deg Off-Axis Parabolic Mirror, Through Hole Parallel to the Focused Beam, 2", RFL 152.4 mm, Protected Gold Current |
WQ-THZ-OAP2612-H
| — | — | — | |
| TPX Plano-Convex THz Lens TLA25050, 25.4 mm Diameter, 50 mm Focal Length |
WQ-THZ-LENS-TLA25050
| — | — | — | Contact |






