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U Alam

Showing results (41-50 of 50) with videos related to

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Transboundary and Emerging Diseases|February 20, 2018
Emergence of two novel sublineages Ind2001BD1 and Ind2001BD2 of foot-and-mouth disease virus serotype O in BangladeshM A Siddique, M R Ali, A S M R U Alam, et al.
Optics Express|June 13, 2014
First demonstration of a 2μm few-mode TDFA for mode division multiplexingY Jung, P C Shardlow, M Belal, et al.
Diabetes Research and Clinical Practice|February 3, 2016
NerveCheck: An inexpensive quantitative sensory testing device for patients with diabetic neuropathyG Ponirakis, M N Odriozola, S Odriozola, et al.
Optics Express|February 12, 2014
20 × 960-Gb/s Space-division-multiplexed 32QAM transmission over 60 km few-mode fiberV A J M Sleiffer, P Leoni, Y Jung, et al.
Optics Express|April 24, 2013
Three mode Er3+ ring-doped fiber amplifier for mode-division multiplexed transmissionY Jung, Q Kang, V A J M Sleiffer, et al.
Optics Express|February 12, 2014
Field demonstration of mode-division multiplexing upgrade scenarios on commercial networksV A J M Sleiffer, H Chen, Y Jung, et al.
Optics Express|April 4, 2015
100 Gbit/s WDM transmission at 2 µm: transmission studies in both low-loss hollow core photonic bandgap fiber and solid core fiberH Zhang, N Kavanagh, Z Li, et al.
Optics Express|December 25, 2012
73.7 Tb/s (96 x 3 x 256-Gb/s) mode-division-multiplexed DP-16QAM transmission with inline MM-EDFAV A J M Sleiffer, Y Jung, V Veljanovski, et al.
Optics Express|February 12, 2014
Demonstration of amplified data transmission at 2 µm in a low-loss wide bandwidth hollow core photonic bandgap fiberM N Petrovich, F Poletti, J P Wooler, et al.
Optics Letters|July 16, 2015
Dense WDM transmission at 2  μm enabled by an arrayed waveguide gratingH Zhang, M Gleeson, N Ye, et al.
Pageof 5

Showing results (41-50 of 50) with videos related to

Sort By:
Pageof 5
You have reached the last page of results.This site can display upto 50 results.
Transboundary and Emerging Diseases|February 20, 2018
Emergence of two novel sublineages Ind2001BD1 and Ind2001BD2 of foot-and-mouth disease virus serotype O in BangladeshM A Siddique, M R Ali, A S M R U Alam, et al.
Optics Express|June 13, 2014
First demonstration of a 2μm few-mode TDFA for mode division multiplexingY Jung, P C Shardlow, M Belal, et al.
Diabetes Research and Clinical Practice|February 3, 2016
NerveCheck: An inexpensive quantitative sensory testing device for patients with diabetic neuropathyG Ponirakis, M N Odriozola, S Odriozola, et al.
Optics Express|February 12, 2014
20 × 960-Gb/s Space-division-multiplexed 32QAM transmission over 60 km few-mode fiberV A J M Sleiffer, P Leoni, Y Jung, et al.
Optics Express|April 24, 2013
Three mode Er3+ ring-doped fiber amplifier for mode-division multiplexed transmissionY Jung, Q Kang, V A J M Sleiffer, et al.
Optics Express|February 12, 2014
Field demonstration of mode-division multiplexing upgrade scenarios on commercial networksV A J M Sleiffer, H Chen, Y Jung, et al.
Optics Express|April 4, 2015
100 Gbit/s WDM transmission at 2 µm: transmission studies in both low-loss hollow core photonic bandgap fiber and solid core fiberH Zhang, N Kavanagh, Z Li, et al.
Optics Express|December 25, 2012
73.7 Tb/s (96 x 3 x 256-Gb/s) mode-division-multiplexed DP-16QAM transmission with inline MM-EDFAV A J M Sleiffer, Y Jung, V Veljanovski, et al.
Optics Express|February 12, 2014
Demonstration of amplified data transmission at 2 µm in a low-loss wide bandwidth hollow core photonic bandgap fiberM N Petrovich, F Poletti, J P Wooler, et al.
Optics Letters|July 16, 2015
Dense WDM transmission at 2  μm enabled by an arrayed waveguide gratingH Zhang, M Gleeson, N Ye, et al.
Pageof 5