Abstract

We present a left–right symmetry restoring method, which removes the detrimental birefringence in the single-mode fiber Sagnac interferometer, achieved with the aid of a half waveplate oriented at a specific angle. We show theoretically and demonstrate experimentally that adding a π-shift between clockwise and counterclockwise propagating, horizontally (in fiber loop plane) polarized field components, the Sagnac loop mirror’s reflection becomes independent on birefringence of an element placed in the loop.

© 2013 Optical Society of America

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References

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2013 (1)

C. Shen, C. Zhong, J. Chu, X. Zou, Y. Jin, J. Wang, X. Dong, Y. Li, L. Wang, and C. Shen, Opt. Commun. 287, 31 (2013).
[CrossRef]

2010 (1)

2009 (1)

2005 (3)

2004 (1)

2003 (1)

E. Simova and I. Golub, IEEE Photon. Technol. Lett. 15, 960 (2003).
[CrossRef]

2002 (1)

2001 (2)

2000 (1)

1997 (1)

1995 (1)

1988 (2)

T. A. Birks and P. Morkel, Appl. Opt. 27, 3107 (1988).
[CrossRef]

N. J. Doran and D. Wood, Opt. Lett 13, 56 (1988).
[CrossRef]

1984 (1)

Binh, L. N.

L. N. Binh, Photonic Signal Processing: Techniques and Application (CRC, 2008), p. 182.

Birks, T. A.

Cai, H.

Camas-Anzueto, J. T.

Choi, B.

Chu, J.

C. Shen, C. Zhong, J. Chu, X. Zou, Y. Jin, J. Wang, X. Dong, Y. Li, L. Wang, and C. Shen, Opt. Commun. 287, 31 (2013).
[CrossRef]

Claus, R. O.

Culshaw, B.

Dashti, P. Z.

de la Rosa, E.

Dong, X.

C. Shen, C. Zhong, J. Chu, X. Zou, Y. Jin, J. Wang, X. Dong, Y. Li, L. Wang, and C. Shen, Opt. Commun. 287, 31 (2013).
[CrossRef]

Doran, N. J.

N. J. Doran and D. Wood, Opt. Lett 13, 56 (1988).
[CrossRef]

Dorsinville, R.

Estudillo Ayala, J. M.

Fang, X.

Gan, J.

Garcia-Gomez, D. E.

Golub, I.

I. Golub and E. Simova, Opt. Lett. 30, 87 (2005).
[CrossRef]

E. Simova, I. Golub, and M. J. Picard, J Opt. Soc. Am. B 22, 1723 (2005).
[CrossRef]

E. Simova and I. Golub, IEEE Photon. Technol. Lett. 15, 960 (2003).
[CrossRef]

I. Golub and E. Simova, Opt. Lett. 27, 1681 (2002).
[CrossRef]

Gutiérrez Zainos, F.

Haus, J. W.

Ibarra Escamilla, B.

Ibarra-Escamilla, B.

Jin, Y.

C. Shen, C. Zhong, J. Chu, X. Zou, Y. Jin, J. Wang, X. Dong, Y. Li, L. Wang, and C. Shen, Opt. Commun. 287, 31 (2013).
[CrossRef]

Kim, B. Y.

Kim, C. S.

Kuzin, E. A.

Lama, P.

Lee, H. P.

Li, Q.

Li, Y.

C. Shen, C. Zhong, J. Chu, X. Zou, Y. Jin, J. Wang, X. Dong, Y. Li, L. Wang, and C. Shen, Opt. Commun. 287, 31 (2013).
[CrossRef]

Madamopoulos, N.

Monzon, D.

Morkel, P.

Nelson, J. S.

Picard, M. J.

E. Simova, I. Golub, and M. J. Picard, J Opt. Soc. Am. B 22, 1723 (2005).
[CrossRef]

Pottiez, O.

Qiao, L.

Qu, R.

Senthilkumaran, P.

Shaw, H. J.

Shen, C.

C. Shen, C. Zhong, J. Chu, X. Zou, Y. Jin, J. Wang, X. Dong, Y. Li, L. Wang, and C. Shen, Opt. Commun. 287, 31 (2013).
[CrossRef]

C. Shen, C. Zhong, J. Chu, X. Zou, Y. Jin, J. Wang, X. Dong, Y. Li, L. Wang, and C. Shen, Opt. Commun. 287, 31 (2013).
[CrossRef]

Simova, E.

E. Simova, I. Golub, and M. J. Picard, J Opt. Soc. Am. B 22, 1723 (2005).
[CrossRef]

I. Golub and E. Simova, Opt. Lett. 30, 87 (2005).
[CrossRef]

E. Simova and I. Golub, IEEE Photon. Technol. Lett. 15, 960 (2003).
[CrossRef]

I. Golub and E. Simova, Opt. Lett. 27, 1681 (2002).
[CrossRef]

Starodumov, A. N.

Thursby, G.

Ummy, M. A.

Wang, J.

C. Shen, C. Zhong, J. Chu, X. Zou, Y. Jin, J. Wang, X. Dong, Y. Li, L. Wang, and C. Shen, Opt. Commun. 287, 31 (2013).
[CrossRef]

Wang, L.

C. Shen, C. Zhong, J. Chu, X. Zou, Y. Jin, J. Wang, X. Dong, Y. Li, L. Wang, and C. Shen, Opt. Commun. 287, 31 (2013).
[CrossRef]

Wood, D.

N. J. Doran and D. Wood, Opt. Lett 13, 56 (1988).
[CrossRef]

Ye, Q.

Zenteno, L. A.

Zhong, C.

C. Shen, C. Zhong, J. Chu, X. Zou, Y. Jin, J. Wang, X. Dong, Y. Li, L. Wang, and C. Shen, Opt. Commun. 287, 31 (2013).
[CrossRef]

Zou, X.

C. Shen, C. Zhong, J. Chu, X. Zou, Y. Jin, J. Wang, X. Dong, Y. Li, L. Wang, and C. Shen, Opt. Commun. 287, 31 (2013).
[CrossRef]

Appl. Opt. (1)

IEEE Photon. Technol. Lett. (1)

E. Simova and I. Golub, IEEE Photon. Technol. Lett. 15, 960 (2003).
[CrossRef]

J Opt. Soc. Am. B (1)

E. Simova, I. Golub, and M. J. Picard, J Opt. Soc. Am. B 22, 1723 (2005).
[CrossRef]

Opt. Commun. (1)

C. Shen, C. Zhong, J. Chu, X. Zou, Y. Jin, J. Wang, X. Dong, Y. Li, L. Wang, and C. Shen, Opt. Commun. 287, 31 (2013).
[CrossRef]

Opt. Express (2)

Opt. Lett (1)

N. J. Doran and D. Wood, Opt. Lett 13, 56 (1988).
[CrossRef]

Opt. Lett. (10)

Other (1)

L. N. Binh, Photonic Signal Processing: Techniques and Application (CRC, 2008), p. 182.

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Figures (3)

Fig. 1.
Fig. 1.

Configuration of the π-shifted SI with HWP and DUT (birefringent element) in the loop with a tap coupler to measure the reflection; the in-loop light polarization component is shown with double solid (no HWP) and dashed (HWP placed in SI) arrows.

Fig. 2.
Fig. 2.

SLM reflection as a function of BPC’s birefringence with (dashed line) and without (solid line) HWP.

Fig. 3.
Fig. 3.

SLM reflection as a function of DUT (QWP) orientation angle with (dashed line) and without (solid line) HWP.

Equations (4)

Equations on this page are rendered with MathJax. Learn more.

E1nout=Kn1/2(1Kn)1/2Ja(ω)E1nin+Kn1/2(1Kn)1/2Jc(ω)E1nin,
JHWPc=[icos2ρisin2ρisin2ρicos2ρ],JHWPa=[icos2ρisin2ρisin2ρicos2ρ]JDUTc=[exp(iδ2)cos2α+exp(iδ2)sin2α2isin2αsinδ22isin2αsinδ2exp(iδ2)cos2α+exp(iδ2)sin2α],JDUTa=[exp(iδ2)cos2α+exp(iδ2)sin2α2isin2αsinδ22isin2αsinδ2exp(iδ2)cos2α+exp(iδ2)sin2α]
R(λ)=1sin2δ(λ)2sin22α.
R(λ)=1cos2δ(λ)2sin22ρ.

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