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2015.10.20 06:39

Daystar 쿼크 관련

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데이스타 쿼크를 사용중 한쪽 귀퉁이에 다른 곳보다 조금 밝은 부분이 있어, 문의하니 점검을 위해 보내줘도 되지만, 자기 생각엔 문제 없다며  

아래와 같은 글을 보내주네요.


Here is a segment about our mica etalon crystals that you may find helpful in this issue. 

At the heart of the DayStar narrow bandpass filter is an Etalon crystal.   
This is a naturally grown crystal made of Mica, mined from the ground, sorted for clarity, cleaved by hand into a thin wafer. We use only the brightest transmission, highest grade mica in the world. 
It is then sorted again for homogeniety and coated with our proprietary coatings to produce the narrow bandpass performance of a Fabry Perot Etalon.   Because the wafer on which the coatings lies is an actual cleaved crystal, mined from the ground, each crystal will maintain microscopic variations from crystal to crystal. Those variations cause slight changes in the index of refraction of the substrate, and therefore, changes to the FWHM and/or CWL of the resulting etalon. 

While mica crystal is flat to the molecular level, the matrix of the crystal growth still has variation due to the abundance percentages of the various elements within that crystal.  
Therefore, across the aperture of the etalon crystal, we see some etalons which are more uniform in their behavior than others.  
Flawless crystals with incredible uniformity, when discovered and qualified, are reserved for a PE classification. 
PE grade uniformity of this scale is necessary for Universities and research groups who will perform quantitative scientific measurements of the sun and it's chromosphere, where variations in wavelength will affect their resulting data.  

A uniform etalon crystal of PE grade will transmit  an even Central Wavelength accurate to the following specification: 
"The mean peak wavelength of all 12 mm. dia. areas shall be within ± 0.05 ångström of the full aperture wavelength measurement.

An SE grade filter will transmit with a similar accuracy of ± 0.5 ångström over the similar area. 

Because 1Å is 1/6562 wave, this means that these variations are incredibly microscopic. 
An SE grade uniformity of 0.5Å will be accurate to the scale of 1/13,124 wave. 
PE grade uniformity must be accurate to the scale of 1/131,240 wave.   This is within the scale between the nucleus of an atom and the first electron!  
While operating within a bandpass of 0.5Å total bandpass range, that very small variation can be detected with variations in transmission due to narrower FWHM or in center wavelength (CWL) 

We have also recently found that PE grade uniformity in FWHM (bandpass) across the aperture of the filter will affect density variations in photographic applications.   For example, areas with sharp changes between 0.4Å and 0.45Å can result from  crystal growth changes of direction and create a "sheer line".   This is different than a steppe between layers of the mica.  
A steppe causes an immediate 10Å jump in CWL.    These flaws do not pass our screening process and are rejected in quality control process. 
Photographic applications are more sensitive to SE grade filters with FWHM sheer or non-homogeniety.  
Some very serious photographers who want the absolute highest imaging quality will consider the PE grade for their imaging appli cations.

Why don't we just manufacture all etalons to the PE Grade?  
Due to the scarcity of flawless, PE grade stock which qualifies at the scale of accuracy required, those PE grade etalon crystals are reserved for applications where the client has the research requirement and has the budget to cover the costs to grade, test, tune and qualify the substrate on the top end test equipment as required.  

Remember that 1 nanometer is 1/billionth of a meter. 
1Å is 0.1 nanometer.
So the accuracy of the of ± 0.05 ångström uniformity of the transmission of the PE grade filter equals 5/1,000,000,000,000 (5 / 1 trillionth ) of a meter.  This is 1/130,000 of a wave. 

We are proud to offer SE grade filters to the non-research based astronomy market for high quality, reasonably priced solar observing.  
SE grade etalon crystals are available in Quantum SE, Quark filters and SolaREDi telescopes. 

Kind regards,

  • 김종호 2015.10.20 10:00 (*.97.47.101)

    결국 꼬우면 pe버전 쓰라는거네요.ㅋ 해외유저들 반응은 싼맛에 쓰는거니 어쩔수 없다는 반응과 교환처리 받으라는 반응이 있더군요. 완전히 평탄한 쿼크도 있나봐요. 

    결국 자기네 기준에서(소비자는 완벽평탄기준)어느정도 평탄면이 나타나도 그냥 출고하나봅니다.ㅎ

  • 김영렬 2015.10.20 13:06 (*.66.58.81)
    뽑기운이네요~
  • 이건호 2015.10.20 13:37 (*.101.107.100)
    가장자리에 불균일이 아주 약간 있어, 무시하고 쓰려구요.
  • 김광욱 2015.10.21 17:22 (*.32.115.153)
    한번 보내 보세요. 잘되면 교환이고 아니면 뭐...
  • 이건호 2015.10.21 21:52 (*.56.169.120)
    전체적으로는 잘 보여서 걍 쓰려구요. 보냈다거 더 후진 놈이 올수도 있어요 ㅎㅎ
  • 어진선 2015.10.27 01:19 (*.234.105.37)

    제 쿼크는 홈염은 잘 보이는 것 같지만 표면을 볼 때 밝기가 아주 불규칙하게 보입니다. 밝은 부분에서는 표면이 잘 안보이고, 어두운 부분에서는 표면이 정말 잘 보이네요. 연무와 미세먼지가 많이 낀날 관측한 결과입니다만, 문제가 온도의 문제가 아니라 에탈론 크리스탈 문제이군요... 크리스탈 품질에 따라, 싼 넘과 비싼 넘이 나눠 지나 봅니다.

    냉각 CCD 칩도 A class, B class가 있지 않나요?

    같은 개념같긴 하지만... 맑은날 다시 테스트해 봐야 할 것 같습니다.

  • 이건호 2015.10.27 10:48 (*.101.107.100)
    그렇군요. 그럼 저는 수리 보내지 않은것.. 잘한거 같아요 ^^

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