Large-mode-area single-mode multi-core segmented cladding fiber
A technology with a large mode field and a fiber core, applied in the field of petal-shaped optical fibers, can solve problems such as the difficulty of making photonic crystal fiber air holes, the limited diameter of the core layer of the petal-shaped optical fiber, and the bending sensitivity of multi-groove optical fibers, etc., to achieve high-power Single-mode laser output, improved heat resistance and single-mode characteristics, and the effect of saving manufacturing costs
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Embodiment 1
[0028] Large mode area single-mode 1-layer 3-lobed fiber, see figure 1 . The center of the optical fiber is a rare earth ion-doped core area (1), and the first layer of silicon ring core (2,1) and the first layer of rare earth ion doped ring core (3,1) are distributed from the inside to the outside, surrounding the first layer of rare earth doped The ion ring core (3, 1) is evenly distributed with three lobe-shaped cores (4, 1), (4, 2), (4, 3) with the same radius, radian and thickness, the inner cladding (5), the outer cladding ( 6), in this example, N=1, M=3;
[0029] The types of rare earth ion doped in the rare earth ion core region (1), the rare earth ion doped ring core (3,1), the petal core (4,1), (4,2), and (4,3) are all erbium ions .
[0030] The refractive indices of the rare earth ion-doped core region (1), the rare earth ion-doped ring core (3,1), and the lobe-shaped fiber cores (4,1), (4,2), and (4,3) are equal;
[0031] The refractive index of the first silic...
Embodiment 2
[0035] Large mode area single-mode 1-layer 4-lobe fiber, see figure 2 . The center of the optical fiber is a rare earth ion-doped core area (1), and the first layer of silicon ring core (2,1) and the first layer of rare earth ion doped ring core (3,1) are distributed from the inside to the outside, surrounding the first layer of rare earth doped The ionic ring core (3, 1) evenly distributes four lobe-shaped cores (4, 1), (4, 2), (4, 3), (4, 4) with the same radius, radian and thickness, and the inner cladding ( 5), outer cladding (6), N=1, M=4 in this example;
[0036] Doped rare earth ion core region (1), rare earth ion doped ring core (3,1), lobe-shaped fiber core (4,1), (4,2), (4,3), (4,4) doped rare earth The ion types are all erbium ions.
[0037] Refractive index of RE-doped core region (1), RE-doped ring core (3,1), lobe core (4,1), (4,2), (4,3), (4,4) equal;
[0038] The refractive index of the first silicon ring core (2,1) is lower than that of the rare earth io...
Embodiment 3
[0042] Large mode area single-mode 1-layer 6-lobed fiber, see image 3. The center of the optical fiber is a rare earth ion-doped core area (1), and the first layer of silicon ring core (2, 1) and the first layer of rare earth ion doped ring core (3, 1) are distributed from the inside to the outside. The inner cladding of the optical fiber surrounds the second A layer of rare earth ion-doped ring core (3,1) evenly distributes six lobe-shaped cores (4,1), (4,2), (4,3), (4,4), ( 4,5), (4,6), inner cladding (5), outer cladding (6), N=1, M=6 in this example;
[0043] Doped rare earth ion core area (1), doped rare earth ion ring core (3,1), lobe-shaped fiber core (4,1), (4,2), (4,3), (4,4), (4 ,5), (4,6) doped with rare earth ions are all erbium ions.
[0044] Doped rare earth ion core area (1), doped rare earth ion ring core (3,1), lobe-shaped fiber core (4,1), (4,2), (4,3), (4,4), (4 ,5) and (4,6) have the same refractive index;
[0045] The refractive index of the first sil...
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