Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where J.K. Sahu is active.

Publication


Featured researches published by J.K. Sahu.


Optics Express | 2004

Ytterbium-doped large-core fiber laser with 1.36 kW continuous-wave output power

Yoonchan Jeong; J.K. Sahu; D.N. Payne; Johan Nilsson

We have demonstrated a highly-efficient cladding-pumped ytterbium-doped fiber laser generating 1.36 kW of continuous-wave output power at 1.1 mum with 83% slope efficiency and near diffraction-limited beam quality. The laser was end-pumped through both fiber ends and showed no evidence of roll-over even at the highest output power, which was limited only by available pump power.


IEEE Journal of Selected Topics in Quantum Electronics | 2007

Power Scaling of Single-Frequency Ytterbium-Doped Fiber Master-Oscillator Power-Amplifier Sources up to 500 W

Yoonchan Jeong; Johan Nilsson; J.K. Sahu; D.N. Payne; R. Horley; L.M.B. Hickey; P.W. Turner

We discuss continuous-wave single-frequency master- oscillator power-amplifier (MOPA) sources based on ytterbium- doped fibers (YDFs) with particular attention to their recent advances and our experimental results. This includes a 402-W plane-polarized MOPA source and a 511-W random-polarized MOPA source. In these MOPAs, the final-stage high-power amplifier operates with high efficiency of 70%-80%, and a high gain of over 20 dB in a near diffraction-limited beam. We report at least 7-dB enhancement of the stimulated Brillouin scattering (SBS) threshold for the 402-W polarization-maintaining (PM) YDF. In fact, we did not see any sign of SBS even at the highest output power. We eventually observed SBS appearance at around 500 W for the non-PM YDF. The observed SBS strengths were far weaker than expected in theory, unless we allowed for the Brillouin gain reduction from thermal Brillouin gain broadening induced by the quantum-defect heating.


Optics Express | 2001

Cladding pumped Ytterbium-doped fiber laser with holey inner and outer cladding

Kentaro Furusawa; A. Malinowski; J.H.V. Price; Tanya M. Monro; J.K. Sahu; Johan Nilsson; David J. Richardson

We have fabricated an ytterbium doped all-glass double-clad large mode area holey fiber. A highly efficient cladding pumped single transverse mode holey fiber laser has been demonstrated, allowing continuous-wave output powers in excess of 1W with efficiencies of more than 80%. Furthermore both Q-switched and mode-locked operation of the laser have been demonstrated.


Optics Express | 2012

73.7 Tb/s (96 x 3 x 256-Gb/s) mode-division-multiplexed DP-16QAM transmission with inline MM-EDFA

V.A.J.M. Sleiffer; Yongmin Jung; V. Veljanovski; R.G.H. van Uden; Maxim Kuschnerov; Haoshuo Chen; Beril Inan; Lars Grüner-Nielsen; Y. Sun; David J. Richardson; Shaif-ul Alam; Francesco Poletti; J.K. Sahu; Anirban Dhar; A.M.J. Koonen; Brian Corbett; R. Winfield; Andrew D. Ellis; H. de Waardt

Transmission of a 73.7 Tb/s (96 x 3 x 256-Gb/s) DP-16QAM mode-division-multiplexed signal over 119 km of few-mode fiber transmission line incorporating an inline multi mode EDFA and a phase plate based mode (de-)multiplexer is demonstrated. Data-aided 6 x 6 MIMO digital signal processing was used to demodulate the signal. The total demonstrated net capacity, taking into account 20% of FEC-overhead and 7.5% additional overhead (Ethernet and training sequences), is 57.6 Tb/s, corresponding to a spectral efficiency of 12 bits/s/Hz.


IEEE Journal of Selected Topics in Quantum Electronics | 2007

Erbium:Ytterbium Codoped Large-Core Fiber Laser With 297-W Continuous-Wave Output Power

Yoonchan Jeong; Seongwoo Yoo; C.A. Coderaard; Johan Nilsson; J.K. Sahu; D.N. Payne; R. Horley; P.W. Turner; L.M.B. Hickey; A. Harker; M. Lovelady; A. Piper

We have demonstrated a high-power and high-efficiency erbium:ytterbium (Er:Yb) codoped fiber laser that produces 297 W of continuous-wave output at 1567 nm. The slope efficiency with respect to the launched pump power changed from 40% to 19% at higher output power due to the onset of Yb colasing at 1067 nm. However, the Yb colasing was essential for the suppression of catastrophic pulsation at high pump powers that otherwise results if the Yb-band gain is allowed to build up. Spectroscopic characteristics of the fiber and the impact of the Yb colasing on the 1567-nm slope efficiency are also discussed.


Optics Letters | 2007

Photodarkening in Yb-doped aluminosilicate fibers induced by 488 nm irradiation

Seongwoo Yoo; C. Basu; A.J. Boyland; C.L. Sones; Johan Nilsson; J.K. Sahu; D.N. Payne

Photodarkening of Yb-doped aluminosilicate fibers by continuous wave 488 nm irradiation was investigated. The irradiation induced significant excess loss in the UV-visible spectroscopy (VIS) region in Yb-doped aluminosilicate fibers while pure aluminosilicate fibers showed negligible induced loss. Ultraviolet-VIS-near infrared spectroscopy revealed an absorption peak at 220 nm in unexposed Yb-doped aluminosilicate fiber preforms. The observed peak was attributed to Yb-associated oxygen deficiency centers (ODCs) and proposed as a precursor of the photodarkening. The proposed model was supported by measurements on oxygen loaded Yb-doped aluminosilicate fibers. In these, the photodarkening could be significantly reduced, which we attribute to a smaller number of ODCs following oxygen loading.


Optics Letters | 2005

Single-frequency, single-mode, plane-polarized ytterbium-doped fiber master oscillator power amplifier source with 264 W of output power

Yoonchan Jeong; Johan Nilsson; J.K. Sahu; D.B.S. Soh; C. Alegria; P. Dupriez; Christophe A. Codemard; D.N. Payne; R. Horley; L. M. B. Hickey; L. Wanzcyk; C. E. Chryssou; J. A. Alvarez-Chavez; P. W. Turner

We present a single-frequency, single-mode, plane-polarized ytterbium-doped all-fiber master oscillator power amplifier source at 1060 nm generating 264 W of continuous-wave output power. The final-stage amplifier operated with a high gain of 19 dB and a high conversion efficiency of 68%. There was no evidence of rollover from stimulated Brillouin scattering even at the highest output power, and the maximum output was limited only by the available pump power.


Optics Letters | 2006

Highly efficient in-band pumped Er:YAG laser with 60 W of output at 1645 nm

D.Y. Shen; J.K. Sahu; W.A. Clarkson

A high-power Er:YAG laser that is in-band pumped by a high-power cladding-pumped erbium-ytterbium codoped fiber laser operating at 1532 nm is reported. The Er:YAG laser produced 60.3 W of continuous-wave output at 1645.3 nm in a beam with M2 approximately equal to 3 for 82 W of incident pump power and 20 W of TEM00 output with M2 < 1.2 for 32.4 W of incident pump power. The slope efficiency with respect to incident pump power at pump powers of >20 W was approximately 81%. In the Q-switched mode of operation, a slightly modified resonator configuration incorporating an electro-optic Q switch produced pulses of approximately 4 mJ energy and approximately 100 ns (FWHM) duration, corresponding to a peak power of approximately 42 kW at a repetition rate of 1 kHz for an incident pump power of 16.8 W. The prospects for further improvement in continuous-wave and Q-switched performance are discussed.


Optical Engineering | 2007

Suspended-core holey fiber for evanescent-field sensing

Andrew S. Webb; Francesco Poletti; David J. Richardson; J.K. Sahu

A simple fabrication technique for a silica suspended-core holey fiber design is presented that features a higher air-filling fraction than most holey fibers, making it ideal for evanescent-field-sensing applications. The holes in the fiber are defined through mechanical drilling of the preform, which is a significantly quicker and more straightforward approach to the customary stacking method. During the draw, the shape of the holes are manipulated so that the final fiber design approximates that of an air-suspended rod with three fine struts supporting the core. Modeling reveals that the modal overlap is greater than 29% at 1550 nm for a core diameter of 0.8 µm, which is significantly higher than any previously reported index-guiding structure used for sensing. A basic gas sensor is demonstrated using acetylene as the sensing medium and the results are reported.


IEEE Photonics Technology Letters | 2006

High average power, high repetition rate, picosecond pulsed fiber master oscillator power amplifier source seeded by a gain-switched laser diode at 1060 nm

P. Dupriez; A. Piper; A. Malinowski; J.K. Sahu; M. Ibsen; Benn C. Thomsen; Yoonchan Jeong; L.M.B. Hickey; M.N. Zervas; Johan Nilsson; David J. Richardson

We demonstrate a pulsed ytterbium-doped fiber master-oscillator power amplifier source at 1060 nm producing over 300 W of average power in 20-ps pulses at 1-GHz repetition rate. The pulses generated by a gain-switched diode were compressed by a chirped fiber Bragg grating and amplified without any distortion with excellent spectral quality. This fiber master oscillator power amplifier system offers versatility and potential for further power scaling.

Collaboration


Dive into the J.K. Sahu's collaboration.

Top Co-Authors

Avatar

Johan Nilsson

University of Southampton

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar

Yoonchan Jeong

Seoul National University

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar

W.A. Clarkson

University of Southampton

View shared research outputs
Top Co-Authors

Avatar

Seongwoo Yoo

Nanyang Technological University

View shared research outputs
Top Co-Authors

Avatar

Shaif-ul Alam

University of Southampton

View shared research outputs
Top Co-Authors

Avatar

D.N. Payne

University of Southampton

View shared research outputs
Top Co-Authors

Avatar

A.J. Boyland

University of Southampton

View shared research outputs
Top Co-Authors

Avatar

Yongmin Jung

University of Southampton

View shared research outputs
Researchain Logo
Decentralizing Knowledge