IP Library Granted Patent US 12,607,797
Granted Patent B2
US 12,607,797 · App. 18/353,984 · Granted Apr 21, 2026

Multicore optical fiber with low group delay

Inventor: Ming-Jun Li (Horseheads, NY)
Assignee: CORNING INCORPORATED
G02B6/02042G02B6/0365
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Quick Facts
Patent No.
US 12,607,797
App. No.
18/353,984
Granted
Apr 21, 2026
Kind
B2
Abstract

A multicore optical fiber is provided including a first core region having a first refractive index profile, a second core region having a second refractive index profile, wherein the first core region is separated from the second core region by a separation distance in a range of 20-50 μm, and an outer cladding surrounding the first and second core regions, wherein the first core region exhibits a first effective index and a first group index and the second core region exhibits a second effective index and a second group index, and the first and second effective indices are substantially different to suppress crosstalk and the first and second group indices are substantially the same to achieve a substantially similar group velocity.

Claims (24)

1 . A multicore optical fiber comprising:

a first core region having a first refractive index profile;

a second core region having a second refractive index profile, wherein the first core region is separated from the second core region by a separation distance in a range of 20-50 μm;

an outer cladding surrounding the first and second core regions, wherein the first core region exhibits a first effective index and a first group index and the second core region exhibits a second effective index and a second group index, wherein the first and second effective indices are different to suppress crosstalk and the first and second group indices are substantially the same to achieve a substantially similar group velocity, wherein the first and second core regions are single-moded, and wherein the first and second core regions have a group delay difference below 1 ps/km.

2 . The multicore optical fiber of claim 1 , wherein a difference between the first and second effective indices is greater than 1×10 −5 and a difference between the first and second group indices of the first and second core regions is less than 1×10 −3 .

3 . The multicore optical fiber of claim 1 , wherein a difference between the first and second effective indices is greater than 5×10 −5 and a difference between the first and second group indices of the first and second core regions is less than 1×10 −4 .

4 . The multicore optical fiber of claim 1 , wherein the first and second core regions each comprise a core having-a core radius in the range of 3-10 μm and a core Δ 1 (%) in the range of 0.2% to 0.5%.

5 . The multicore optical fiber of claim 1 , wherein the first and second core regions are designed to operate at a wavelength of approximately 1310 nm, and wherein the first and second core regions each comprises an effective area in the range of 50-80 μm 2 .

6 . The multicore optical fiber of claim 5 , wherein the first and second core regions have dispersion in the range of −10 to +10 ps/(nm×km).

7 . The multicore optical fiber of claim 1 , wherein the first and second core regions are designed to operate at a wavelength of approximately 1550 nm, and wherein the first and second core regions each comprise an effective area in the range of 60-90 μm 2 .

8 . The multicore optical fiber of claim 7 , wherein the first and second core regions each comprise a dispersion in the range of −10 to +25 ps/(nm×km).

9 . The multicore optical fiber of claim 1 , wherein the first core region comprises a first core and a first inner cladding surrounding the first core, and wherein the second core region comprises a second core and a second inner cladding surrounding the second core.

10 . The multicore optical fiber of claim 9 , wherein the first inner cladding comprises a first low index trench and the second inner cladding comprises a second low index trench, wherein a refractive index of the first low index trench is lower than a refractive index of the first cladding and a refractive index of the outer cladding, and wherein a refractive index of the second low index trench is lower than a refractive index of the second cladding and the refractive index of the outer cladding.

11 . The multicore optical fiber of claim 1 , further comprising an outer protection layer surrounding the outer cladding.

12 . The multicore optical fiber of claim 1 , wherein the separation distance between the first and second core regions is in the range of 25-45 μm.

13 . The multicore optical fiber of claim 1 , wherein the first and second core regions experience a crosstalk below −30 dB/km.

14 . The multicore optical fiber of claim 1 , wherein the first and second core regions experience a crosstalk below −50 dB/km.

15 . The multicore optical fiber of claim 1 , wherein the first and second core regions experience a group delay difference below 0.5 ps/km.

16 . The multicore optical fiber of claim 1 , further comprising more than two core regions surrounded by the outer cladding.

17 . A multicore optical fiber comprising:

a first core region having a first refractive index profile and a first core having a first core size;

a second core region having a second refractive index profile and a second core having a second core size different from the first core size, wherein the first core region is separated from the second core region by a separation distance in a range of 20-50 μm; and

an outer cladding surrounding the first and second core regions, wherein the first core region exhibits a first effective index and a first group index and the second core region exhibits a second effective index and a second group index, wherein the first and second effective indices are substantially different to suppress crosstalk and the first and second group indices are the same to achieve a substantially similar group velocity, wherein a difference between the first and second effective indices is greater than 1×10 −5 and a difference between the first and second group indices of the first and second core regions is less than 1×10 −3 , wherein the first and second core regions are single-moded, and wherein the first and second core regions have a group delay difference below 1 ps/km.

18 . The multicore optical fiber of claim 17 , wherein a difference between the first and second effective indices is greater than 5×10 −5 and a difference between the first and second group indices of the first and second core regions is less than 1×10 −4 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 18, 2023
From: LI, MING-JUN
To: CORNING INCORPORATED
Reel/Frame 064300/0540 →
Continuity (2)
Provisional Application 63396396 · Aug 9, 2022
Related Publication 20240053530A1 · Feb 15, 2024
References Cited (8)
US 8811787B2 · Feuer · 2014 [cited by applicant]
US 10073217B2 · Ishida et al. · 2018 [cited by applicant]
US 20130136404A1 · Feuer · 2013 [cited by examiner]
US 20130251320A1 · Hayashi · 2013 [cited by examiner]
US 20150316715A1 · Matsuo · 2015 [cited by examiner]
US 20170160466A1 · Imamura · 2017 [cited by examiner]
US 20180356590A1 · Amma · 2018 [cited by examiner]
Jeunhomme, “Single Mode Fiber Optics”, Marcel Dekker, New York, 1990, pp. 39-44. [cited by applicant]
Cited By (1)
US 12,732,278