default search action
Ian D. Phillips
Person information
Other persons with a similar name
SPARQL queries
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2024
- [c38]Benjamin J. Puttnam, Ruben S. Luis, Yetian Huang, Ian D. Phillips, Dicky Chung, Nicolas K. Fontaine, Budsara Boriboon, Georg Rademacher, Mikael Mazur, Lauren Dallachiesa, Haoshuo Chen, Wladek Forysiak, Ray Man, Roland Ryf, David T. Neilson, Hideaki Furukawa:
264.7 Tb/s E, S, C + L-Band Transmission over 200 km. OFC 2024: 1-3 - [c37]Benjamin J. Puttnam, Ruben S. Luis, Ian D. Phillips, Mingming Tan, Aleksandr Donodin, Dini Pratiwi, Lauren Dallachiesa, Y. Huang, Mikael Mazur, Nicolas K. Fontaine, H. Chen, Dicky Chung, V. Ho, Daniele Orsuti, Budsara Boriboon, Georg Rademacher, Luca Palmieri, Ray Man, Roland Ryf, David T. Neilson, Wladek Forysiak, Hideaki Furukawa:
402 Tb/s GMI data-rate OESCLU-band Transmission. OFC 2024: 1-3 - 2023
- [c36]Pratim Hazarika, Aleksandr Donodin, Mingming Tan, Ian D. Phillips, Paul Harper, Wladek Forysiak:
30-Gbaud PM-16-QAM transmission over E-, S-, C- and L-band with hybrid Raman amplifier. OFC 2023: 1-3 - 2022
- [c35]Aleksandr Donodin, Mingming Tan, Ian D. Phillips, Abdallah A. I. Ali, Pratim Hazarika, Mohammed Patel, Paul Harper, Vladislav Dvoyrin, Wladek Forysiak, Sergei K. Turitsyn:
50 Gbaud QPSK E-band Transmission Using Bismuth Doped Fiber Amplifiers. OFC 2022: 1-3 - [c34]Pratim Hazarika, Mingming Tan, Aleksandr Donodin, Ian D. Phillips, Paul Harper, Ming-Jun Li, Wladek Forysiak:
210 nm E, S, C and L Band Multistage Discrete Raman Amplifier. OFC 2022: 1-3 - 2021
- [j1]Mingming Tan, Md. Asif Iqbal, Tu Thanh Nguyen, Pawel Rosa, Lukasz Krzczanowicz, Ian D. Phillips, Paul Harper, Wladek Forysiak:
Raman Amplification Optimization in Short-Reach High Data Rate Coherent Transmission Systems. Sensors 21(19): 6521 (2021) - [c33]Pavel Skvortcov, David S. Millar, Ian D. Phillips, Wladek Forysiak, Toshiaki Koike-Akino, Keisuke Kojima, Kieran Parsons:
Experimental Analysis of Mismatched Soft-Demapping for Probabilistic Shaping in Short-Reach Nonlinear Transmission. ECOC 2021: 1-4 - [c32]Mahmood Abu-Romoh, Tu Thanh Nguyen, Pavel Skvortcov, Yaron Yoffe, Ian D. Phillips, Tomislav Drenski, Wladek Forysiak:
Experimental verification of 64-Gbd/64-QAM interworking of probabilistic shaping with a digital resolution enhancer. OFC 2021: 1-3 - [c31]Aleksandr Donodin, Vladislav Dvoyrin, Egor Manuylovich, Ian D. Phillips, Wladek Forysiak, Mikhail Melkumov, Valery M. Mashinsky, Sergei K. Turitsyn:
4-channel E-band data transmission over 160 km of SMF-28 using a bismuth-doped fibre amplifier. OFC 2021: 1-3 - [c30]Vladimir Gordienko, Chandra B. Gaur, Florent Bessin, Ian D. Phillips, Nick J. Doran:
Robust polarization-insensitive C & L band FOPA with >17dB gain for both WDM and bursty traffic. OFC 2021: 1-3 - [c29]Pratim Hazarika, Mahmood Abu-Romoh, Mingming Tan, Lukasz Krzczanowicz, Tu Thanh Nguyen, Md. Asif Iqbal, Ian D. Phillips, Paul Harper, Ming-Jun Li, Wladek Forysiak:
Impact of Chromatic Dispersion in Discrete Raman Amplifiers on Coherent Transmission Systems. OFC 2021: 1-3 - 2020
- [c28]Mahmood Abu-Romoh, Tu Thanh Nguyen, Yaron Yoffe, Ian D. Phillips, Wladek Forysiak:
Numerical study on the combination of Probabilistic Shaping and Digital Resolution Enhancer for high baud rate optical communications. ECOC 2020: 1-4 - [c27]Md. Asif Iqbal, Lukasz Krzczanowicz, Ian D. Phillips, Paul Harper, Andrew Lord, Wladek Forysiak:
Ultra-Wideband Raman Amplifiers for High Capacity Fibre-Optic Transmission Systems. ICTON 2020: 1-4 - [c26]Lukasz Krzczanowicz, Md. Asif Iqbal, Ian D. Phillips, Paul Harper, Wladek Forysiak:
High Capacity Wideband Discrete Raman Amplifiers: Progress, Challenges, and Future Prospects. ICTON 2020: 1-4 - [c25]Md. Asif Iqbal, Lukasz Krzczanowicz, Ian D. Phillips, Paul Harper, Wladek Forysiak:
Evaluation of Performance Penalty from Pump-Signal Overlap in S+C+L Band Discrete Raman Amplifiers. OFC 2020: 1-3 - [c24]Md. Asif Iqbal, Lukasz Krzczanowicz, Ian D. Phillips, Paul Harper, Wladek Forysiak:
150nm SCL-Band Transmission through 70km SMF using Ultra-Wideband Dual-Stage Discrete Raman Amplifier. OFC 2020: 1-3
2010 – 2019
- 2019
- [c23]Lukasz Krzczanowicz, Md. Asif Iqbal, Mohammad Ahmad Zaki Al-Khateeb, Ian D. Phillips, Paul Harper, Wladek Forysiak:
Recent Advances in Discrete Raman Amplifiers and their Applications to Wideband Optical Networks. ICTON 2019: 1-4 - [c22]Md. Asif Iqbal, Lukasz Krzczanowicz, Ian D. Phillips, Paul Harper, Wladek Forysiak:
Distributed Pumping Architecture to Improve the Noise Performance of Broadband Discrete Raman Amplifier. OFC 2019: 1-3 - [c21]Lukasz Krzczanowicz, Mohammad Ahmad Zaki Al-Khateeb, Md. Asif Iqbal, Ian D. Phillips, Paul Harper, Wladek Forysiak:
Performance Estimation of Discrete Raman Amplification within Broadband Optical Networks. OFC 2019: 1-3 - [c20]Pavel Skvortcov, Christian Sanchez-Costa, Ian D. Phillips, Wladek Forysiak:
Receiver DSP Highly Tolerant to Transmitter IQ Impairments. OFC 2019: 1-3 - 2018
- [c19]Md. Asif Iqbal, Lukasz Krzczanowicz, Mohammad Ahmad Zaki Al-Khateeb, Ian D. Phillips, Mingming Tan, Paul Harper, Wladek Forysiak:
Characterisation of Linear and Nonlinear Noise of a Dual-Stage Broadband Discrete Raman Amplifier. ECOC 2018: 1-3 - [c18]Lukasz Krzczanowicz, Md. Asif Iqbal, Ian D. Phillips, Mingming Tan, Pavel Skvortcov, Paul Harper, Wladek Forysiak:
Low Penalty, Dual Stage, Broadband Discrete Raman Amplifier for High Capacity WDM Metro Networks. OFC 2018: 1-3 - 2017
- [c17]Tingting Zhang, Christian Sanchez, Ian D. Phillips, Stylianos Sygletos, Andrew D. Ellis:
200-Gb/s Polarization Multiplexed Doubly Differential QPSK Signal Transmission over 80-km SSMF Using Tandem SSB without Optical Amplification. ECOC 2017: 1-3 - [c16]Md. Asif Iqbal, Mingming Tan, Lukasz Krzczanowicz, Pavel Skvortcov, Atalla El-Taher, Ian D. Phillips, Wladek Forysiak, Juan Diego Ania-Castañón, Paul Harper:
Performance characterization of high gain, high output power and low noise cascaded broadband discrete Raman amplifiers. ICTON 2017: 1-4 - [c15]Lukasz Krzczanowicz, Ian D. Phillips, Md. Asif Iqbal, Mingming Tan, Paul Harper, Wladek Forysiak:
Hybrid discrete Raman/EDFA design for broadband optical amplification in metro WDM systems. ICTON 2017: 1-4 - [c14]Mingming Tan, Pawel Rosa, Md. Asif Iqbal, Son Thai Le, Ian D. Phillips, Sergei K. Turitsyn, Paul Harper:
Raman fibre laser based amplification in long-haul/unrepeatered coherent transmission systems. ICTON 2017: 1-4 - [c13]Gabriel Saavedra, Mingming Tan, Daniel J. Elson, Lídia Galdino, Daniel Semrau, Md. Asif Iqbal, Ian D. Phillips, Paul Harper, Naoise Mac Suibhne, Andrew D. Ellis, Domaniç Lavery, Benn C. Thomsen, Robert I. Killey, Polina Bayvel:
Experimental investigation of nonlinear signal distortions in ultra-wideband transmission systems. OFC 2017: 1-3 - 2016
- [c12]Son Thai Le, Ian D. Phillips, Jaroslaw E. Prilepsky, Paul Harper, Nick J. Doran, Andrew D. Ellis, Sergei K. Turitsyn:
First experimental demonstration of nonlinear inverse synthesis transmission over transoceanic distances. OFC 2016: 1-3 - 2015
- [c11]Andrew D. Ellis, Ian D. Phillips, Mingming Tan, Marc F. C. Stephens, Mary E. McCarthy, M. A. Z. Al Kahteeb, Md. Asif Iqbal, Andreas Perentos, Simon Fabbri, Vladimir Gordienko, Domaniç Lavery, Gabriele Liga, M. G. Saavedra, Robert Maher, Stelios Sygletos, Paul Harper, Nick J. Doran, Polina Bayvel, Sergey K. Turitsyn:
Enhanced superchannel transmission using phase conjugation. ECOC 2015: 1-3 - [c10]Marc F. C. Stephens, Alexei Redyuk, Stylianos Sygletos, Ian D. Phillips, Paul Harper, Keith J. Blow, Nick J. Doran:
The impact of pump phase-modulation and filtering on WDM signals in a fibre optical parametric amplifier. OFC 2015: 1-3 - [c9]Mingming Tan, Pawel Rosa, Ian D. Phillips, Paul Harper:
Extended reach of 116 Gb/s DP-QPSK transmission using random DFB fiber laser based raman amplification and bidirectional second-order pumping. OFC 2015: 1-3 - 2014
- [c8]Elias G. Giacoumidis, Son T. Le, Ian D. Phillips, Andrew D. Ellis, Nick J. Doran:
Dual-polarization multi-band OFDM signals for next generation core networks. CSNDSP 2014: 34-39 - [c7]Stelios Sygletos, Mary E. McCarthy, Simon Fabbri, Mariia Sorokina, Marc F. C. Stephens, Ian D. Phillips, Elias G. Giacoumidis, Naoise Mac Suibhne, Paul Harper, Nick J. Doran, Sergei K. Turitsyn, Andrew D. Ellis:
Multichannel regeneration of dual quadrature signals. ECOC 2014: 1-3 - [c6]Mary E. McCarthy, Stelios Sygletos, Naoise Mac Suibhne, Mingming Tan, Marc F. C. Stephens, Ian D. Phillips, Paul Harper, Nick J. Doran, Andrew D. Ellis:
Challenges of developing non-linear devices to achieve the linear Shannon limit. ICTON 2014: 1-6 - [c5]Pawel Rosa, M. Sezer Erkilinc, Robert Maher, Milen Paskov, Sean Kilmurray, Mingming Tan, Paul Harper, Ian D. Phillips, Andrew D. Ellis, J. D. Ania-Castañón, Benn C. Thomsen, Seb J. Savory, Robert I. Killey, Polina Bayvel:
Nyquist-WDM PDM-QPSK transmission over SMF-28 fibre using URFL amplification. ICTON 2014: 1-3 - [c4]Mingming Tan, Pawel Rosa, Ian D. Phillips, Marc F. C. Stephens, Stylianos Sygletos, Andrew D. Ellis, Paul Harper:
Transmission comparison of ultra-long Raman fibre laser based amplification with first and dual order Raman amplification using 10×118 Gbit/s DP-QPSK. ICTON 2014: 1-4 - [c3]Son T. Le, Thavamaran Kanesan, Mary E. McCarthy, Elias G. Giacoumidis, Ian D. Phillips, Marc F. C. Stephens, Mingming Tan, Nick J. Doran, Andrew D. Ellis, S. K. Turitsyn:
Experimental demonstration of data-dependent pilot-aided phase noise estimation for CO-OFDM. OFC 2014: 1-3 - [c2]Ian D. Phillips, Mingming Tan, Marc F. C. Stephens, Mary E. McCarthy, Elias G. Giacoumidis, Stelios Sygletos, Pawel Rosa, Simon Fabbri, Son Thai Le, Thavamaran Kanesan, Sergey K. Turitsyn, Nick J. Doran, Paul Harper, Andrew D. Ellis:
Exceeding the nonlinear-shannon limit using raman laser based amplification and optical phase conjugation. OFC 2014: 1-3 - [c1]Marc F. C. Stephens, Mingming Tan, Ian D. Phillips, Stelios Sygletos, Paul Harper, Nick J. Doran:
1THz-bandwidth polarization-diverse optical phase conjugation of 10×114Gb/s DP-QPSK WDM signals. OFC 2014: 1-3
Coauthor Index
manage site settings
To protect your privacy, all features that rely on external API calls from your browser are turned off by default. You need to opt-in for them to become active. All settings here will be stored as cookies with your web browser. For more information see our F.A.Q.
Unpaywalled article links
Add open access links from to the list of external document links (if available).
Privacy notice: By enabling the option above, your browser will contact the API of unpaywall.org to load hyperlinks to open access articles. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Unpaywall privacy policy.
Archived links via Wayback Machine
For web page which are no longer available, try to retrieve content from the of the Internet Archive (if available).
Privacy notice: By enabling the option above, your browser will contact the API of archive.org to check for archived content of web pages that are no longer available. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Internet Archive privacy policy.
Reference lists
Add a list of references from , , and to record detail pages.
load references from crossref.org and opencitations.net
Privacy notice: By enabling the option above, your browser will contact the APIs of crossref.org, opencitations.net, and semanticscholar.org to load article reference information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Crossref privacy policy and the OpenCitations privacy policy, as well as the AI2 Privacy Policy covering Semantic Scholar.
Citation data
Add a list of citing articles from and to record detail pages.
load citations from opencitations.net
Privacy notice: By enabling the option above, your browser will contact the API of opencitations.net and semanticscholar.org to load citation information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the OpenCitations privacy policy as well as the AI2 Privacy Policy covering Semantic Scholar.
OpenAlex data
Load additional information about publications from .
Privacy notice: By enabling the option above, your browser will contact the API of openalex.org to load additional information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the information given by OpenAlex.
last updated on 2024-10-07 21:22 CEST by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint