Abstract

Relative intensity noise and frequency noise have been measured for the first time for a single-frequency Brillouin chalcogenide As38Se62 fiber laser. This is also the first demonstration of a compact suspended-core fiber Brillouin laser, which exhibits a low threshold power of 22 mW and a slope efficiency of 26% for nonresonant pumping.

© 2012 Optical Society of America

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References

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2012 (1)

R. Cherif, M. Zghal, and L. Tartara, Opt. Commun. 285, 341 (2012).
[CrossRef]

2011 (1)

2010 (3)

2008 (1)

2007 (1)

2006 (2)

K. Abedin, Opt. Lett. 31, 1615 (2006).
[CrossRef]

J. Geng, S. Staines, Z. Wang, J. Zong, M. Blake, and S. Jiang, IEEE Photon. Technol. Lett. 18, 1813 (2006).
[CrossRef]

2005 (1)

2002 (1)

2001 (2)

1998 (1)

M. Cox, N. Copner, and B. Williams, IET Sci. Meas. Technol. 145, 163, (1998).

1994 (1)

J. Boschung, L. Thevenaz, and P. Robert, Electron. Lett. 30, 1488 (1994).
[CrossRef]

1986 (1)

L. Richter, H. Mandelberg, M. Kruger, and P. McGrath, IEEE J. Quantum Electron. 22, 2070 (1986).
[CrossRef]

1982 (2)

D. S. Elliott, R. Roy, and S. J. Smith, Phys. Rev. A 26, 12 (1982).
[CrossRef]

L. Stokes, M. Chodorow, and H. Shaw, Opt. Lett. 7, 509 (1982).
[CrossRef]

Abedin, K.

Alasia, D.

Beugnot, J.

Black, E. D.

E. D. Black, Am. J. Phys. 69, 79 (2001).
[CrossRef]

Blake, M.

J. Geng, S. Staines, Z. Wang, J. Zong, M. Blake, and S. Jiang, IEEE Photon. Technol. Lett. 18, 1813 (2006).
[CrossRef]

Boschung, J.

J. Boschung, L. Thevenaz, and P. Robert, Electron. Lett. 30, 1488 (1994).
[CrossRef]

Bramerie, L.

Brilland, L.

Calvez, L.

Canat, G.

Chartier, T.

Cherif, R.

R. Cherif, M. Zghal, and L. Tartara, Opt. Commun. 285, 341 (2012).
[CrossRef]

Chodorow, M.

Copner, N.

M. Cox, N. Copner, and B. Williams, IET Sci. Meas. Technol. 145, 163, (1998).

Costa e Silva, M.

Coulombier, Q.

Cox, M.

M. Cox, N. Copner, and B. Williams, IET Sci. Meas. Technol. 145, 163, (1998).

Debut, A.

Desevedavy, F.

Duhant, M.

El Amraoui, M.

Elliott, D. S.

D. S. Elliott, R. Roy, and S. J. Smith, Phys. Rev. A 26, 12 (1982).
[CrossRef]

Fatome, J.

Fortier, C.

Gay, M.

Geng, J.

J. Geng, S. Staines, Z. Wang, J. Zong, M. Blake, and S. Jiang, IEEE Photon. Technol. Lett. 18, 1813 (2006).
[CrossRef]

Houizot, P.

Jiang, S.

J. Geng, S. Staines, Z. Wang, J. Zong, M. Blake, and S. Jiang, IEEE Photon. Technol. Lett. 18, 1813 (2006).
[CrossRef]

Kruger, M.

L. Richter, H. Mandelberg, M. Kruger, and P. McGrath, IEEE J. Quantum Electron. 22, 2070 (1986).
[CrossRef]

Laude, V.

Le, S.

Lenglé, K.

Mafang, S.

Maillotte, H.

Mandelberg, H.

L. Richter, H. Mandelberg, M. Kruger, and P. McGrath, IEEE J. Quantum Electron. 22, 2070 (1986).
[CrossRef]

McGrath, P.

L. Richter, H. Mandelberg, M. Kruger, and P. McGrath, IEEE J. Quantum Electron. 22, 2070 (1986).
[CrossRef]

Méchin, D.

Millot, G.

Monteville, A.

Nguyen, D.

NGuyen, T.

Pain, T.

Pitois, S.

Provino, L.

Randoux, S.

Renard, W.

Renversez, G.

Richter, L.

L. Richter, H. Mandelberg, M. Kruger, and P. McGrath, IEEE J. Quantum Electron. 22, 2070 (1986).
[CrossRef]

Robert, P.

J. Boschung, L. Thevenaz, and P. Robert, Electron. Lett. 30, 1488 (1994).
[CrossRef]

Roy, R.

D. S. Elliott, R. Roy, and S. J. Smith, Phys. Rev. A 26, 12 (1982).
[CrossRef]

Shaw, H.

Smektala, F.

Smith, S. J.

D. S. Elliott, R. Roy, and S. J. Smith, Phys. Rev. A 26, 12 (1982).
[CrossRef]

Spring, J.

Staines, S.

J. Geng, S. Staines, Z. Wang, J. Zong, M. Blake, and S. Jiang, IEEE Photon. Technol. Lett. 18, 1813 (2006).
[CrossRef]

Stepien, L.

Stokes, L.

Sylvestre, T.

Tartara, L.

R. Cherif, M. Zghal, and L. Tartara, Opt. Commun. 285, 341 (2012).
[CrossRef]

Thevenaz, L.

J. Boschung, L. Thevenaz, and P. Robert, Electron. Lett. 30, 1488 (1994).
[CrossRef]

Thévenaz, L.

Thual, M.

Toupin, P.

Traynor, N.

Troles, J.

Wang, Z.

J. Geng, S. Staines, Z. Wang, J. Zong, M. Blake, and S. Jiang, IEEE Photon. Technol. Lett. 18, 1813 (2006).
[CrossRef]

Ward, B.

Williams, B.

M. Cox, N. Copner, and B. Williams, IET Sci. Meas. Technol. 145, 163, (1998).

Zemmouri, J.

Zghal, M.

R. Cherif, M. Zghal, and L. Tartara, Opt. Commun. 285, 341 (2012).
[CrossRef]

Zong, J.

J. Geng, S. Staines, Z. Wang, J. Zong, M. Blake, and S. Jiang, IEEE Photon. Technol. Lett. 18, 1813 (2006).
[CrossRef]

Am. J. Phys. (1)

E. D. Black, Am. J. Phys. 69, 79 (2001).
[CrossRef]

Electron. Lett. (1)

J. Boschung, L. Thevenaz, and P. Robert, Electron. Lett. 30, 1488 (1994).
[CrossRef]

IEEE J. Quantum Electron. (1)

L. Richter, H. Mandelberg, M. Kruger, and P. McGrath, IEEE J. Quantum Electron. 22, 2070 (1986).
[CrossRef]

IEEE Photon. Technol. Lett. (1)

J. Geng, S. Staines, Z. Wang, J. Zong, M. Blake, and S. Jiang, IEEE Photon. Technol. Lett. 18, 1813 (2006).
[CrossRef]

IET Sci. Meas. Technol. (1)

M. Cox, N. Copner, and B. Williams, IET Sci. Meas. Technol. 145, 163, (1998).

J. Opt. Soc. Am. B (2)

Opt. Commun. (1)

R. Cherif, M. Zghal, and L. Tartara, Opt. Commun. 285, 341 (2012).
[CrossRef]

Opt. Express (6)

Opt. Lett. (3)

Phys. Rev. A (1)

D. S. Elliott, R. Roy, and S. J. Smith, Phys. Rev. A 26, 12 (1982).
[CrossRef]

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Figures (4)

Fig. 1.
Fig. 1.

Configuration of the ring cavity BFL. Inset shows the transverse section of the AsSe MOF.

Fig. 2.
Fig. 2.

BFL output power as a function of pump power.

Fig. 3.
Fig. 3.

RIN spectra of the BFLs.

Fig. 4.
Fig. 4.

Frequency noise spectra of the BFLs.

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