A CWDM filter includes a substrate and a multi-layer structure coated on one side of the substrate. The multi-layer structure has the construction of H(LH) 2 4L(HL) 3 H(LH) 3 4L(HL) 3 H(LH) 4 4L(HL) 4 H(LH) 3 4 L(HL) 3 H(LH) 4 4L(HL) 4 H(LH) 3 4L(HL) 3 H(LH) 3 4L(HL) 2 HLH4LH/N S , wherein N S is the substrate, L is a low (refraction) index layer with a thickness of λ 0 /4, H is a high (refraction) index layer with a thickness of λ 0 /4, and λ 0 is the center wavelength of the light transmitting through the CWDM filter.
1. A CWDM filter comprising a substrate and a multi-layer structure coated on one side of the substrate, the substrate having a surface polish diameter of 90 mm and a thickness of 10 mm, and being selectively made of SiO 2 , barium, lithium and sodium; the multi-layer structure having a first portion and a second portion, the first portion comprising at least two Fabry-Perot cavities, the second portion being a coupling layer directly stacked on the substrate surface and located between the substrate and the first portion.
2. The CWDM filter as claimed in claim 1 , wherein the first portion of the multi-layer structure has the following construction, in sequence from the air side to the substrate side:
H(LH) 2 4L(HL) 3 H(LH) 3 4L(HL) 3 H(LH) 4 4L(HL) 4 H(LH) 3 4L(HL) 3 H(LH) 4 4L(HL) 4 H(LH) 3 4L(HL) 3 H(LH) 3 4L(HL) 2 H
where L is a low refraction index layer with a thickness of λ 0 /4, H is a high refraction index layer with a thickness of λ 0 /4, and λ 0 is center wavelength of light transmitting through the CWDM filter.
3. The CWDM filter as claimed in claim 2 , wherein the second portion of the multi-layer structure has the construction of LH4LH, where L is a low refraction index layer with a thickness of λ 0 /4, H is a high refraction index layer with a thickness of λ 0 /4, and λ 0 is center wavelength of light transmitting through the CWDM filter.
4. The CWDM filter as claimed in claim 3 , wherein the first portion is coated on one low index layer of second portion adjacent the air side.
5. The CWDM filter as claimed in claim 1 , wherein the low index layers of the first portion and the second portion are made of SiO 2 with refractive index of 1.38 to 1.44.
6. The CWDM filter as claimed in claim 5 , wherein the high index layers of the first portion and the second portion are made of TaO with refractive index of 2.1 to 2.7.
7. A CWDM filter including a substrate and a multi-layer structure coated on one side of the substrate, the substrate having a surface polish diameter of 90 mm and a thickness of 10 mm, and being selectively made of SiO 2 , barium, lithium and sodium; the multi-layer structure having the following construction:
H(LH) 2 4L(HL) 3 H(LH) 3 4L(HL) 3 H(LH) 4 4L(HL) 4 H(LH) 3 4L(HL) 3 H(LH) 4 4L(HL) 4 H(LH) 3 4L(HL) 3 H(LH) 3 4L(HL) 2 HLH4LH/N S
where N S is the substrate, L is a low refraction index layer with a thickness of λ 0 /4, H is a high refraction index layer with a thickness of λ 0 /4, and λ 0 is center wavelength of light transmitting through the CWDM filter.
8. The CWDM filter as claimed in claim 7 , wherein the low index layers of the multi-layer structure are made of SiO 2 with refractive index 1.38 to 1.44.
9. The CWDM filter as claimed in claim 8 , wherein the high index layers of the multi-layer structure are made of TaO with refractive index 2.1 to 2.7.