Harmonic and single pulse operation of a Raman laser using graphene

We present an all-fiber passively mode-locked Raman laser using graphene as a saturable absorber. Different lengths of a highly non-linear fiber presenting normal dispersion at both pump and signal wavelengths are used in the cavity to provide Raman amplification. The cavity is pumped by a continuou...

Full description

Bibliographic Details
Main Authors: Castellani, C. E. S., Kelleher, E. J. R., Luo, Zhiqiang, Popov, S. V., Taylor, J. R., Wu, K., Ouyang, C., Shum, Perry Ping, Shen, Zexiang
Other Authors: School of Physical and Mathematical Sciences
Format: Journal Article
Language:English
Published: 2013
Online Access:https://hdl.handle.net/10356/99352
http://hdl.handle.net/10220/13672
_version_ 1811690490240696320
author Castellani, C. E. S.
Kelleher, E. J. R.
Luo, Zhiqiang
Popov, S. V.
Taylor, J. R.
Wu, K.
Ouyang, C.
Shum, Perry Ping
Shen, Zexiang
author2 School of Physical and Mathematical Sciences
author_facet School of Physical and Mathematical Sciences
Castellani, C. E. S.
Kelleher, E. J. R.
Luo, Zhiqiang
Popov, S. V.
Taylor, J. R.
Wu, K.
Ouyang, C.
Shum, Perry Ping
Shen, Zexiang
author_sort Castellani, C. E. S.
collection NTU
description We present an all-fiber passively mode-locked Raman laser using graphene as a saturable absorber. Different lengths of a highly non-linear fiber presenting normal dispersion at both pump and signal wavelengths are used in the cavity to provide Raman amplification. The cavity is pumped by a continuous wave Raman laser at 1450 nm, and generates short pulses around 1550 nm, which depending on polarization and filtering parameters can be either at the repetition rate of the cavity or at higher harmonics of it.
first_indexed 2024-10-01T06:04:49Z
format Journal Article
id ntu-10356/99352
institution Nanyang Technological University
language English
last_indexed 2024-10-01T06:04:49Z
publishDate 2013
record_format dspace
spelling ntu-10356/993522020-03-07T12:37:16Z Harmonic and single pulse operation of a Raman laser using graphene Castellani, C. E. S. Kelleher, E. J. R. Luo, Zhiqiang Popov, S. V. Taylor, J. R. Wu, K. Ouyang, C. Shum, Perry Ping Shen, Zexiang School of Physical and Mathematical Sciences School of Electrical and Electronic Engineering Research Techno Plaza We present an all-fiber passively mode-locked Raman laser using graphene as a saturable absorber. Different lengths of a highly non-linear fiber presenting normal dispersion at both pump and signal wavelengths are used in the cavity to provide Raman amplification. The cavity is pumped by a continuous wave Raman laser at 1450 nm, and generates short pulses around 1550 nm, which depending on polarization and filtering parameters can be either at the repetition rate of the cavity or at higher harmonics of it. 2013-09-24T07:59:37Z 2019-12-06T20:06:21Z 2013-09-24T07:59:37Z 2019-12-06T20:06:21Z 2012 2012 Journal Article Castellani, C. E. S., Kelleher, E. J. R., Luo, Z., Wu, K., Ouyang, C., Shum, P. P., et al. (2012). Harmonic and single pulse operation of a Raman laser using graphene. Laser physics letters, 9(3). https://hdl.handle.net/10356/99352 http://hdl.handle.net/10220/13672 10.1002/lapl.201110123 en Laser physics letters
spellingShingle Castellani, C. E. S.
Kelleher, E. J. R.
Luo, Zhiqiang
Popov, S. V.
Taylor, J. R.
Wu, K.
Ouyang, C.
Shum, Perry Ping
Shen, Zexiang
Harmonic and single pulse operation of a Raman laser using graphene
title Harmonic and single pulse operation of a Raman laser using graphene
title_full Harmonic and single pulse operation of a Raman laser using graphene
title_fullStr Harmonic and single pulse operation of a Raman laser using graphene
title_full_unstemmed Harmonic and single pulse operation of a Raman laser using graphene
title_short Harmonic and single pulse operation of a Raman laser using graphene
title_sort harmonic and single pulse operation of a raman laser using graphene
url https://hdl.handle.net/10356/99352
http://hdl.handle.net/10220/13672
work_keys_str_mv AT castellanices harmonicandsinglepulseoperationofaramanlaserusinggraphene
AT kelleherejr harmonicandsinglepulseoperationofaramanlaserusinggraphene
AT luozhiqiang harmonicandsinglepulseoperationofaramanlaserusinggraphene
AT popovsv harmonicandsinglepulseoperationofaramanlaserusinggraphene
AT taylorjr harmonicandsinglepulseoperationofaramanlaserusinggraphene
AT wuk harmonicandsinglepulseoperationofaramanlaserusinggraphene
AT ouyangc harmonicandsinglepulseoperationofaramanlaserusinggraphene
AT shumperryping harmonicandsinglepulseoperationofaramanlaserusinggraphene
AT shenzexiang harmonicandsinglepulseoperationofaramanlaserusinggraphene