
( Brand: Newport ), ( Manufacturer Part Number: 10RP02-24 ), ( Part Type: Plate )
The 10RP02-24 632.8 nm Quartz Zero-Order Retarder from Newport is a high-quality optical component designed for use in a variety of applications, including spectroscopy, interferometry, and laser systems.
This zero-order retarder is made of quartz material, which is known for its excellent optical properties, including high transparency and low birefringence. The 632.8 nm wavelength is specifically chosen for its use in the red part of the visible light spectrum, making it a popular choice for many optical applications.
The retarder has a thickness of 25.4 mm, which provides a precise and stable retardance of zero degrees. This means that it can be used to eliminate any polarization effects in the optical system, ensuring that the light passes through the system without any unwanted polarization changes.
The 10RP02-24 zero-order retarder is manufactured to the highest standards of quality and precision, with a surface roughness of less than 10 Angstroms. This ensures that the retarder has minimal scattering and reflections, which can affect the performance of the optical system.
The retarder is available in a standard size of 25.4 mm x 25.4 mm, but custom sizes can be manufactured upon request. It is delivered with a retardance zero calibration certificate, which provides a traceable and reliable measurement of the retardance of the retarder.
Overall, the 10RP02-24 632.8 nm Quartz Zero-Order Retarder from Newport is a reliable and high-performance optical component that can help ensure the best possible performance in a variety of optical systems. Its high quality, precision, and excellent optical properties make it an ideal choice for researchers, engineers, and technicians working in the field of optics and laser technology.
Pros of buying a 10RP02-24 632.8nm Quartz 25.4mm Plate Zero-Order Retarder from Newport:1. High-quality construction: Newport is known for producing high-quality optical components, and this retarder is no exception. It is made of quartz for excellent optical properties and is designed to provide precise and stable retardation over time.
2. Wide wavelength range: This retarder can be used over a wide wavelength range, from 400 to 1200nm, making it a versatile tool for a variety of optical applications.
3. Large plate size: The 25.4mm diameter of the plate provides a large surface area, which can be beneficial in applications where high throughput is required.
4. Zero-order operation: The retarder is designed to provide zero-order retardation, which means that it will not introduce any unwanted optical distortions.
5. Repeatability: This retarder is designed to provide consistent retardation values, making it ideal for applications where precise control of optical retardation is required.
Cons of buying a 10RP02-24 632.8nm Quartz 25.4mm Plate Zero-Order Retarder from Newport:1. Price: This retarder is a high-end optical component, and as such, it may be more expensive than other options on the market.
2. Size and weight: Due to its large plate size, this retarder is heavier and bulkier than some other options, which may be a consideration for users with limited space or mobility.
3. Limited wavelength range: While this retarder has a wide wavelength range, it may not be suitable for applications that require retardation at wavelengths outside of this range.
In conclusion, the 10RP02-24 632.8nm Quartz 25.4mm Plate Zero-Order Retarder from Newport is a high-quality optical component that is well-suited for applications that require precise and stable retardation over a wide wavelength range. While it is more expensive and larger than some other options, its excellent construction and performance make it a worthwhile investment for users with demanding optical requirements. Overall, I would recommend this retarder to users who require high precision and stability in their optical applications and have the budget to invest in a high-end component.
The primary benefit is a moderate insensitivity to wave length change, making them ideal for laser diode or unable laser applications. The assembly is held in a 1 inch a typical zero order wave plate has a temperature coefficient of. Zero order wave plates offer several distinct advantages over multiple order wave plates c compared. The fast axis of one plate is aligned with the slow axis of the other, so that the net retardation is the difference of the two retardation's.
The wave plate is anti reflection coated to maximize transmission at them diameter black anodized aluminum housing to protect the optic and permit convenient handling and mounting. This zero order wave plate is constructed of two quartz plates, air spaced to allow for use with high power lasers. By combining two wave plates whose retardation's differ by exactly 4 or 2, a true 4 or 2 wave plate results. For example, a zero order wave plate designed for 780 nm will provide useful retardant from nm.
8 nm wave length , and has a 2 retardation c for a multiple order wave plate, providing less change in retardation over an extended temperature range. The zero order quartz wave plate is a temperature insensitive phase retarder for moderate band width applications.