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Publikationer av Sergei Popov

Refereegranskade

Artiklar

[1]
X. Pang et al., "200 Gb/s Optical-Amplifier-Free IM/DD Transmissions Using a Directly Modulated O-Band DFB+R Laser Targeting LR Applications," Journal of Lightwave Technology, vol. 41, no. 11, s. 3635-3641, 2023.
[3]
E. Mavrona et al., "Efficiency assessment of wood and cellulose-based optical elements for terahertz waves," Optical Materials Express, vol. 13, no. 1, s. 92-103, 2023.
[4]
M. Han et al., "High Spectral Efficiency Long-Wave Infrared Free-Space Optical Transmission With Multilevel Signals," Journal of Lightwave Technology, vol. 41, no. 20, s. 6514-6520, 2023.
[6]
M. Joharifar et al., "High-Speed 9.6-μm Long-Wave Infrared Free-Space Transmission With a Directly-Modulated QCL and a Fully-Passive QCD," Journal of Lightwave Technology, vol. 41, no. 4, s. 1087-1094, 2023.
[7]
M. Han et al., "Long-Wave Infrared Discrete Multitone Free-Space Transmission Using a 9.15-μm Quantum Cascade Laser," IEEE Photonics Technology Letters, vol. 35, no. 9, s. 489-492, 2023.
[8]
O. Ozolins et al., "Optical Amplification-Free High Baudrate Links for Intra-Data Center Communications," Journal of Lightwave Technology, vol. 41, no. 4, s. 1200-1206, 2023.
[10]
L. Zhang et al., "Quantum Noise Secured Terahertz Communications," IEEE Journal of Selected Topics in Quantum Electronics, vol. 29, no. 5: Terahertz Photonics, s. 1-10, 2023.
[11]
W. Hu et al., "Tapping Eavesdropper Designs Against Physical Layer Secret Key in Point-to-Point Fiber Communications," Journal of Lightwave Technology, vol. 41, no. 5, s. 1406-1414, 2023.
[13]
A. Samanta et al., "Charge Regulated Diffusion of Silica Nanoparticles into Wood for Flame Retardant Transparent Wood," Advanced Sustainable Systems, vol. 6, no. 4, s. 2100354-2100354, 2022.
[14]
W. Wen et al., "Designing a self-accelerating beam by Wigner transform," Results in Physics, vol. 34, 2022.
[16]
Y. Fan et al., "Feedforward Neural Network-based EVM Estimation : Impairment Tolerance in Coherent Optical Systems," IEEE Journal of Selected Topics in Quantum Electronics, s. 1-1, 2022.
[17]
W. Hu et al., "High-Dimensional Feature Based Non-Coherent Detection for Multi-Intensity Modulated Ultraviolet Communications," Journal of Lightwave Technology, vol. 40, no. 7, s. 1879-1887, 2022.
[19]
J. Ding et al., "Intra-Channel Nonlinearity Mitigation in Optical Fiber Transmission Systems Using Perturbation-Based Neural Network," Journal of Lightwave Technology, vol. 40, no. 21, s. 7106-7116, 2022.
[23]
Y. Fan et al., "Experimental validation of CNNs versus FFNNs for time- and energy-efficient EVM estimation in coherent optical systems," Journal of Optical Communications and Networking, vol. 13, no. 10, s. E63-E71, 2021.
[24]
M. Höglund et al., "Facile Processing of Transparent Wood Nanocomposites with Structural Color from Plasmonic Nanoparticles," Chemistry of Materials, vol. 33, no. 10, s. 3736-3745, 2021.
[25]
Y. Fan et al., "Fast signal quality monitoring for coherent communications enabled by CNN-based EVM estimation," Journal of Optical Communications and Networking, vol. 13, no. 4, s. B12-B20, 2021.
[27]
C. Jin et al., "Nonlinear Coherent Optical Systems in the Presence of Equalization Enhanced Phase Noise," Journal of Lightwave Technology, vol. 39, no. 14, s. 4646-4653, 2021.
[28]
A. Samanta et al., "Reversible dual-stimuli responsive chromic transparent wood bio-composites for smart window applications," ACS Applied Materials and Interfaces, vol. 13, s. 3270-3277, 2021.
[29]
X. Pang et al., "Short Reach Communication Technologies for Client-Side Optics Beyond 400 Gbps," IEEE Photonics Technology Letters, vol. 33, no. 18, s. 1046-1049, 2021.
[30]
X. Pang et al., "200 Gbps & x002F;Lane IM & x002F;DD Technologies for Short Reach Optical Interconnects," Journal of Lightwave Technology, vol. 38, no. 2, s. 492-503, 2020.
[31]
X. Pang et al., "Free-Space Communications Enabled by Quantum Cascade Lasers," Physica Status Solidi (a) applications and materials science, 2020.
[32]
L. Zhang et al., "Kernel Affine Projection for Nonlinearity Tolerant Optical Short Reach Systems," IEEE Transactions on Communications, vol. 68, no. 10, s. 6403-6412, 2020.
[33]
W. Hu et al., "Non-Coherent Detection for Ultraviolet Communications With Inter-Symbol Interference," Journal of Lightwave Technology, vol. 38, no. 17, s. 4699-4707, 2020.
[34]
[35]
A. Udalcovs et al., "Optical Power Budget of 25+Gbps IM/DD PON with Digital Signal Post-Equalization," Applied Sciences, vol. 10, no. 17, 2020.
[36]
S. Kolpakov et al., "Optical rogue waves in coupled fiber Raman lasers," Optics Letters, vol. 45, no. 17, s. 4726-4729, 2020.
[37]
H. Chen et al., "Refractive index of delignified wood for transparent biocomposites," RSC Advances, vol. 10, s. 40719-40724, 2020.
[38]
[41]
J. M. Estaran et al., "140/180/204-Gbaud OOK Transceiver for Inter- and Intra-Data Center Connectivity," Journal of Lightwave Technology, vol. 37, no. 1, s. 178-187, 2019.
[42]
E. Vasileva et al., "Effect of transparent wood on the polarization degree of light," Optics Letters, vol. 44, no. 12, s. 2962-2965, 2019.
[43]
J. Van Kerrebrouck et al., "High-Speed PAM4-Based Optical SDM Interconnects With Directly Modulated Long-Wavelength VCSEL," Journal of Lightwave Technology, vol. 37, no. 2, s. 356-362, 2019.
[47]
S. Gyger et al., "Reconfigurable frequency coding of triggered single photons in the telecom C-band," Optics Express, vol. 27, no. 10, s. 14400-14406, 2019.
[48]
H. Chen et al., "Thickness Dependence of Optical Transmittance of Transparent Wood : Chemical Modification Effects," ACS Applied Materials and Interfaces, vol. 11, no. 38, s. 35451-35457, 2019.
[49]
L. Zhang et al., "Toward Terabit Digital Radio over Fiber Systems : Architecture and Key Technologies," IEEE Communications Magazine, vol. 57, no. 4, s. 131-137, 2019.
[50]
S. Jia et al., "0.4 THz Photonic-Wireless Link With 106 Gb/s Single Channel Bitrate," Journal of Lightwave Technology, vol. 36, no. 2, s. 610-616, 2018.
[51]
M. Koivurova et al., "Complete spatial coherence characterization of quasi-random laser emission from dye doped transparent wood," Optics Express, vol. 26, no. 10, s. 13474-13482, 2018.
[52]
T. Xu et al., "Dynamic physical layer equalization in optical communication networks," Optoelectronics and Advanced Materials Rapid Communications, vol. 12, no. 5-6, s. 292-298, 2018.
[53]
P. Loiko et al., "Inkjet-printing of graphene saturable absorbers for similar to 2 mu m bulk and waveguide lasers," Optical Materials Express, vol. 8, no. 9, s. 2803-2814, 2018.
[54]
E. Vasileva et al., "Light Scattering by Structurally Anisotropic Media : A Benchmark with Transparent Wood," Advanced Optical Materials, vol. 6, no. 23, 2018.
[55]
Y. Lu et al., "Multi-channel collision-free reception for optical interconnects," Optics Express, vol. 26, no. 10, s. 13214-13222, 2018.
[57]
Y. Li et al., "Optically Transparent Wood : Recent Progress, Opportunities, and Challenges," Advanced Optical Materials, vol. 6, no. 14, 2018.
[61]
X. Chen et al., "TDHQ Enabling Fine-Granularity Adaptive Loading for SSB-DMT Systems," IEEE Photonics Technology Letters, vol. 30, no. 19, s. 1687-1690, 2018.
[62]
A. Marinins et al., "Thermal Reflow Engineered Cylindrical Polymer Waveguides for Optical Interconnects," IEEE Photonics Technology Letters, vol. 30, no. 5, s. 447-450, 2018.
[63]
X. Peng et al., "Twisted Laguerre-Gaussian Schell-model beam and its orbital angular moment," Optics Express, vol. 26, no. 26, s. 33956-33969, 2018.
[64]
O. Ozolins et al., "100 GHz Externally Modulated Laser for Optical Interconnects," Journal of Lightwave Technology, vol. 35, no. 6, s. 1174-1179, 2017.
[65]
V. Cristofori et al., "25-Gb/s Transmission Over 2.5-km SSMF by Silicon MRR Enhanced 1.55-mu m III-V/SOI DML," IEEE Photonics Technology Letters, vol. 29, no. 12, s. 960-963, 2017.
[68]
[70]
G. Lobov et al., "Electro-optical effects of high aspect ratio P3HT nanofibers colloid in polymer micro-fluid cells," Optics Letters, vol. 42, no. 11, s. 2157-2160, 2017.
[72]
X. Pang et al., "Experimental Study of 1.55-μ m EML-Based Optical IM/DD PAM-4/8 Short Reach Systems," IEEE Photonics Technology Letters, vol. 29, no. 6, s. 523-526, 2017.
[75]
E. Vasileva et al., "Lasing from Organic Dye Molecules Embedded in Transparent Wood," Advanced Optical Materials, vol. 5, no. 10, 2017.
[76]
A. Marinins et al., "Light Converting Polymer/Si Nanocrystal Composites with Stable 60-70% Quantum Efficiency and their Glass Laminates," ACS Applied Materials and Interfaces, vol. 9, no. 36, s. 30267-30272, 2017.
[77]
M. Y. Leong et al., "Low-complexity BCH codes with optimized interleavers for DQPSK systems with laser phase noise," Photonic network communications, vol. 33, no. 3, s. 328-333, 2017.
[78]
M. Verplaetse et al., "Real-Time 100 Gb/s Transmission Using Three-Level Electrical Duobinary Modulation for Short-Reach Optical Interconnects," Journal of Lightwave Technology, vol. 35, no. 7, s. 1313-1319, 2017.
[79]
V. Kalashnikov et al., "Stochastic phenomena in a fiber Raman amplifier," Annalen der Physik, vol. 529, no. 1-2, 2017.
[80]
A. Marinins, N. Knudde och S. Popov, "Air-Suspended SU-8 Strip Waveguides With High Refractive Index Contrast," IEEE Photonics Technology Letters, vol. 28, no. 17, s. 1862-1865, 2016.
[82]
J. R. Navarro et al., "Carrier Phase Recovery Algorithms for Coherent Optical Circular mQAM Systems," Journal of Lightwave Technology, vol. 34, no. 11, s. 2717-2723, 2016.
[83]
E. P. da Silva et al., "Combined Optical and Electrical Spectrum Shaping for High-Baud-Rate Nyquist-WDM Transceivers," IEEE Photonics Journal, vol. 8, no. 1, 2016.
[84]
G. Lobov et al., "Dynamic Manipulation of Optical Anisotropy of Suspended Poly-3-hexylthiophene Nanofibers," Advanced Optical Materials, vol. 4, no. 10, s. 1651-1656, 2016.
[85]
[87]
T. Hassinen et al., "Generation of nearly 3D-unpolarized evanescent optical near fields using total internal reflection," Optics Letters, vol. 41, no. 13, s. 2942-2945, 2016.
[89]
H. B. Naveed, S. Popov och M. Shafique, "Model microcavity laser with CdSe/CdS quantum dots as lasing media," Laser physics, vol. 26, no. 2, 2016.
[90]
V. Kalashnikov et al., "Multi-scale polarisation phenomena," LIGHT-SCIENCE & APPLICATIONS, vol. 5, 2016.
[91]
[92]
A. Marinins et al., "Photostable Polymer/Si Nanocrystal Bulk Hybrids with Tunable Photoluminescence," ACS Photonics, vol. 3, no. 9, s. 1575-1580, 2016.
[93]
G. S. Lobov et al., "Size Impact of Ordered P3HT Nanofibers on Optical Anisotropy," Macromolecular Chemistry and Physics, vol. 217, no. 9, s. 1089-1095, 2016.
[95]
J. Rodrigo Navarro et al., "Adaptive Boundaries Scheme for Cycle-Slip Mitigation in C-mQAM Coherent Systems," IEEE Photonics Technology Letters, vol. 27, no. 20, s. 2154-2157, 2015.
[97]
A. Kakkar et al., "Comprehensive study of equalization-enhanced phase noise in coherent optical systems," Journal of Lightwave Technology, vol. 33, no. 23, s. 4834-4841, 2015.
[98]
G. S. Lobov et al., "Electric field induced optical anisotropy of P3HT nanofibers in a liquid solution," Optical Materials Express, vol. 5, no. 11, s. 2642-2647, 2015.
[100]
[101]
M. Y. Leong et al., "Interleavers and BCH Codes for Coherent DQPSK Systems With Laser Phase Noise," IEEE Photonics Technology Letters, vol. 27, no. 7, s. 685-688, 2015.
[102]
M. Piels et al., "Laser Rate Equation-Based Filtering for Carrier Recovery in Characterization and Communication," Journal of Lightwave Technology, vol. 33, no. 15, s. 3271-3279, 2015.
[103]
A. Kakkar et al., "Mitigation of EEPN in Coherent Optical Systems With Low-Speed Digital Coherence Enhancement," IEEE Photonics Technology Letters, vol. 27, no. 18, s. 1942-1945, 2015.
[104]
R. Soltanmoradi et al., "Near-infrared light absorption and scattering based on a mono-layer of gold nanoparticles," Journal of the European Optical Society-Rapid Publications, vol. 10, 2015.
[105]
M. Y. Leong et al., "Dimensioning BCH Codes for Coherent DQPSK Systems With Laser Phase Noise and Cycle Slips," Journal of Lightwave Technology, vol. 32, no. 21, s. 4048-4052, 2014.
[106]
M. Iglesias Olmedo et al., "Multiband Carrierless Amplitude Phase Modulation for High Capacity Optical Data Links," Journal of Lightwave Technology, vol. 32, no. 4, s. 798-804, 2014.
[107]
G. Jacobsen et al., "Phase noise influence in coherent optical DnPSK systems with DSP based dispersion compensation," Journal of optical communications, vol. 35, no. 1, s. 57-61, 2014.
[109]
M. Y. Leong et al., "Receiver sensitivity in optical and microwave, heterodyne and homodyne systems," Journal of optical communications, vol. 35, no. 3, s. 221-229, 2014.
[111]
L. Dong et al., "Photoluminescence from quasi-type-II spherical CdSe-CdS core-shell quantum dots," Applied Optics, vol. 52, no. 1, s. 105-109, 2013.
[112]
S. Zhou et al., "Radiative properties of carriers in CdSe-CdS core-shell heterostructured nanocrystals of various geometries," Journal of the European Optical Society-Rapid Publications, vol. 8, s. 13042, 2013.
[113]
G. Jacobsen et al., "Study of EEPN mitigation using modified RF pilot and Viterbi-Viterbi based phase noise compensation," Optics Express, vol. 21, no. 10, s. 12351-12362, 2013.
[114]
[115]
L. Dong et al., "Lasing From Water Solution of Rhodamine 6G/Gold Nanoparticles : Impact of SiO2-Coating on Metal Surface," IEEE Journal of Quantum Electronics, vol. 48, no. 9, s. 1220-1226, 2012.
[116]
S. Iyer, S. Popov och Ari. T. Friberg, "Linear birefringence in split-ring resonators," Optics Letters, vol. 37, no. 11, s. 2043-2045, 2012.
[117]
G. Jacobsen et al., "Phase noise influence in coherent optical OFDM systems with RF pilot tone : Digital IFFT multiplexing and FFT demodulation," Journal of optical communications, vol. 33, no. 3, s. 217-226, 2012.
[118]
G. Jacobsen et al., "Phase noise influence in long-range coherent optical OFDM systems with delay detection, IFFT multiplexing and FFT demodulation," Journal of optical communications, vol. 33, no. 4, s. 289-295, 2012.
[119]
[120]
S. Sergeyev och S. Popov, "Two-Section Fiber Optic Raman Polarizer," IEEE Journal of Quantum Electronics, vol. 48, no. 1, s. 56-60, 2012.
[121]
[122]
K. Wang et al., "100-112 Gbit/s complete ETDM systems based on monolithically integrated transmitter and receiver modules," Journal of Beijing Institute of Technology (English Edition), vol. 20, no. 3, s. 410-414, 2011.
[124]
S. S. Abbas och S. Y. Popov, "Compact Er 3+-doped ZBLAN green upconversion fibre laser," World Academy of Science, Engineering and Technology: An International Journal of Science, Engineering and Technology, vol. 78, s. 756-758, 2011.
[126]
[127]
L. Dong et al., "Fluorescence quenching and photobleaching in Au/Rh6G nanoassemblies : impact of competition between radiative and non-radiative decay," Journal of the European Optical Society-Rapid Publications, vol. 6, s. 11019, 2011.
[128]
[129]
S. S. Iyer, S. Popov och A. Friberg, "Loss optimization in double fishnet metamaterials at telecommunication wavelengths," Journal of the European Optical Society-Rapid Publications, vol. 6, s. 11008, 2011.
[130]
L. Dong, S. Popov och A. Friberg, "One-step fabrication of polymer components for microphotonics by gray scale electron beam lithography," Journal of the European Optical Society-Rapid Publications, vol. 6, s. 11010, 2011.
[131]
G. Jacobsen et al., "Phase noise influence in optical OFDM systems employing RF pilot tone for noise cancellation," Journal of optical communications, vol. 32, no. 2, 2011.
[132]
G. Jacobsen et al., "Receiver implemented RF pilot tone phase noise mitigation in coherent optical nPSK and nQAM systems," Optics Express, vol. 19, no. 15, s. 14487-14494, 2011.
[133]
A. Sugunan et al., "Synthesis of tetrahedral quasi-type-II CdSe-CdS core-shell quantum dots," Nanotechnology, vol. 22, no. 42, s. 425202, 2011.
[134]
T. Xu et al., "Chromatic dispersion compensation in coherent transmission system using digital filters," Optics Express, vol. 18, no. 15, s. 16243-16257, 2010.
[135]
S. Sergeyev et al., "Coherence and anticoherence resonance in high-concentration erbium-doped fiber laser," Optics Letters, vol. 35, no. 22, s. 3736-3738, 2010.
[136]
S. Popov et al., "Efficiency enhancement in a microcavity solid-state dye laser with Bragg grating reflectors," Central European Journal of Physics, vol. 8, no. 2, s. 202-206, 2010.
[137]
S. Iyer, S. Popov och A. T. Friberg, "Impact of apexes on the resonance shift in double hole nanocavities," Optics Express, vol. 18, no. 1, s. 193-203, 2010.
[139]
S. Sergeyev, S. Popov och A. T. Friberg, "Raman amplification with reduced polarization impairments in the fibre with tailored spin profile," Central European Journal of Physics, vol. 8, no. 2, s. 164-168, 2010.
[140]
L. Dong et al., "Spatial light modulator as a reconfigurable intracavity dispersive element for tunable lasers," Central European Journal of Physics, vol. 8, no. 2, s. 228-234, 2010.
[141]
S. Iyer, S. Popov och A. T. Friberg, "Transmission resonances in periodic U-shaped metallic nanostructures," Optics Express, vol. 18, no. 17, s. 17719-17728, 2010.
[142]
S. Sergeyev et al., "Upconversion assisted self-pulsing in a high-concentration erbium doped fibre laser," Central European Journal of Physics, vol. 8, no. 2, s. 159-163, 2010.
[143]
S. Sergeyev, S. Popov och A. T. Friberg, "Virtually Isotropic Transmission Media With Fiber Raman Amplifier," IEEE Journal of Quantum Electronics, vol. 46, no. 10, s. 1492-1497, 2010.
[144]
Y. Li, S. Popov och A. T. Friberg, "Rigorous modeling and physical interpretation of terahertz near-field imaging using SNOM techniques," Journal of the European Optical Society-Rapid Publications, vol. 4, 2009.
[145]
R. Zhang et al., "DISTORTION TOLERANCE AGAINST GEOMETRY IMPERFECTIONS IN POLYMERIC MICROCAVITY DYE LASER," Journal of nonlinear optical physics and materials, vol. 17, no. 4, s. 367-375, 2008.
[146]
S. Sergeyev, S. Popov och A. Friberg, "Spun Aber Raman amplifiers with reduced polarization impairments," Optics Express, vol. 16, no. 19, s. 14380-14389, 2008.
[147]
S. Sergeyev och S. Popov, "Excitation back transfer in a statistical model for upconversion in Er-doped fibres," Journal of the European Optical Society-Rapid Publications, vol. 2, s. 07027, 2007.
[148]
[149]
S. Popov et al., "Mode suppression in a microcavity solid-state dye laser," Journal of the European Optical Society-Rapid Publications, vol. 2, s. 07203, 2007.
[150]
S. V. Sergeyev, S. Popov och A. T. Friberg, "Polarization-dependent gain and gain fluctuations in a fiber Raman amplifier," Journal of Optics. A, Pure and applied optics, vol. 9, no. 12, s. 1119-1122, 2007.
[151]
S. Ricciardi et al., "Thermally induced wavelength tunability of microcavity solid-state dye lasers," Optics Express, vol. 15, no. 20, s. 12971-12978, 2007.
[152]
S. Sergeyev, S. Popov och A. T. Friberg, "Modeling polarization-dependent gain in fiber Raman amplifiers with randomly varying birefringence," Optics Communications, vol. 262, no. 1, s. 114-119, 2006.
[153]
S. Sergeyev et al., "Statistical model of migration-assisted upconversion in a high-concentration erbium-doped fiber amplifier," Journal of the Optical Society of America. B, Optical physics, vol. 23, no. 8, s. 1540-1543, 2006.
[154]
S. Sergeyev, S. Popov och A. T. Friberg, "Influence of the short-range coordination order of erbium ions on excitation migration and upconversion in multicomponent glasses," Optics Letters, vol. 30, no. 11, s. 1258-1260, 2005.
[155]
S. Popov, S. Sergeyev och A. T. Friberg, "The impact of pump polarization on the polarization dependence of the Raman gain due to the breaking of a fibre's circular symmetry," Journal of Optics. A, Pure and applied optics, vol. 6, no. 3, s. S72-S76, 2004.

Konferensbidrag

[156]
O. Ozolins et al., "106.25 Gbaud 4-Level Pulse Amplitude Modulation Links Supporting (2x)100Gigabit Ethernet on Single Lambda," i 2023 OPTICAL FIBER COMMUNICATIONS CONFERENCE AND EXHIBITION, OFC, 2023.
[157]
M. Joharifar et al., "8.1 Gbps PAM8 Long -Wave IR FSO Transmission using a 9.15-mu m Directly-Modulated QCL with an MCT Detector," i 2023 OPTICAL FIBER COMMUNICATIONS CONFERENCE AND EXHIBITION, OFC, 2023.
[158]
M. Joharifar et al., "8.1 Gbps PAM8 Long-Wave IR FSO Transmission using a 9.15-μm Directly-Modulated QCL with an MCT Detector," i 2023 Optical Fiber Communications Conference and Exhibition, OFC 2023 - Proceedings, 2023.
[159]
R. Puerta et al., "Coherent Joint Transmission with 1024-QAM for 6G Distributed-MIMO Networks with Analog Radio-over-LWIR FSO Fronthaul Links," i 2023 Asia Communications and Photonics Conference/2023 International Photonics and Optoelectronics Meetings, ACP/POEM 2023, 2023.
[160]
M. Han et al., "Deep Reservoir Computing for 100 Gbaud PAM6 IM/DD Transmission Impairment Mitigation," i 2023 OPTICAL FIBER COMMUNICATIONS CONFERENCE AND EXHIBITION, OFC, 2023.
[161]
R. Puerta et al., "Experimental Validation of Coherent Joint Transmission in a Distributed-MIMO System with Analog Fronthaul for 6G," i 2023 Joint European Conference on Networks and Communications and 6G Summit, EuCNC/6G Summit 2023, 2023, s. 585-590.
[162]
R. Puerta et al., "NR Conformance Testing of Analog Radio-over-LWIR FSO Fronthaul link for 6G Distributed MIMO Networks," i 2023 Optical Fiber Communications Conference and Exhibition (OFC), 2023.
[163]
O. Ozolins et al., "Optical Amplification -Free 310/256 Gbaud 00K, 197/145 Gbaud PAM4, and 160/116 Gbaud PAM6 EML/DML-based Data Center Links," i 2023 OPTICAL FIBER COMMUNICATIONS CONFERENCE AND EXHIBITION, OFC, 2023.
[164]
O. Ozolins et al., "Optical Amplification-Free 310/256 Gbaud OOK, 197/145 Gbaud PAM4, and 160/116 Gbaud PAM6 EML/DML-based Data Center Links," i 2023 Optical Fiber Communications Conference and Exhibition, OFC 2023 - Proceedings, 2023.
[165]
Q. Deng et al., "Quantum Noise Secured Terahertz Communications," i 2023 OPTICAL FIBER COMMUNICATIONS CONFERENCE AND EXHIBITION, OFC, 2023.
[166]
Z. Xu et al., "Vortex Beams on Incoherent Background," i 2023 Photonics North, PN 2023, 2023.
[167]
X. Pang et al., "11 Gb/s LWIR FSO Transmission at 9.6 mu m using a Directly-Modulated Quantum Cascade Laser and an Uncooled Quantum Cascade Detector," i 2022 Optical Fiber Communications Conference and Exhibition, OFC 2022 - Proceedings, 2022.
[169]
X. Pang et al., "200 Gb/s Unamplified IM/DD Transmission over 20-km SMF with an O-band Low-Chirp Directly Modulated Laser," i 2022 European Conference on Optical Communication, ECOC 2022, 2022.
[170]
R. Puerta et al., "5G/NR Conformance Testing of Analog Radio-overfiber Fronthaul Links," i 2022 IEEE International Topical Meeting on Microwave Photonics, MWP 2022 : Proceedings, 2022.
[171]
Y. Fan et al., "A Comparison of Linear Regression and Deep Learning Model for EVM Estimation in Coherent Optical Systems," i 2022 Conference on Lasers and Electro-Optics Pacific Rim, CLEO-PR 2022 - Proceedings, 2022.
[172]
Y. Fan et al., "A Comparison of Linear Regression and Deep LearningModel for EVM Estimation in Coherent Optical Systems," i Pacific Rim Conference on Lasers and Electro-Optics (CLEO-PR), 2022.
[173]
Y. Fan et al., "EVM Estimation for Performance Monitoring in Coherent Optical Systems : An Approach of Linear Regression," i 2022 Conference on Lasers and Electro-Optics, CLEO 2022 - Proceedings, 2022.
[175]
Y. Fan et al., "EVM Estimation for Performance Monitoring in Coherent Optical Systems: An Approach of Linear Regression," i IEEE/OSA Conference on Lasers and Electro-Optics (CLEO), 2022.
[176]
O. Ozolins et al., "Error-Free 108 Gbps On-Off Keying Link for Optical Interconnect Applications," i 2022 European Conference on Optical Communication, ECOC 2022, 2022.
[177]
O. Ozolins et al., "High Baudrate Short-Reach Communication," i Proceedings OECC/PSC 2022 - 27th OptoElectronics and Communications Conference/International Conference on Photonics in Switching and Computing 2022, 2022.
[178]
C. Jin et al., "High-Speed Long-Haul Multi-Channel Nonlinear Optical Communication Systems Influenced by Equalization Enhanced Phase Noise," i 2022 IEEE 14Th International Conference On Advanced Infocomm Technology (ICAIT 2022), 2022, s. 103-106.
[179]
O. Ozolins et al., "Optical Amplification-Free 200 Gbaud On-Off Keying Link for Intra-Data Center Communications," i 2022 Optical Fiber Communications Conference and Exhibition, OFC 2022 - Proceedings, 2022.
[180]
[181]
Y. Fan et al., "Deep Learning Assisted Pre-Carrier Phase Recovery EVM Estimation for Coherent Transmission Systems," i 2021 Conference on Lasers and Electro-Optics, CLEO 2021 - Proceedings, 2021.
[183]
X. Pang et al., "Directly modulated quantum cascade laser and its application in free-space communications," i Optoelectronic Devices And Integration X, 2021.
[184]
X. Pang et al., "Free-Space Transmissions in the Upper- and Lower-THz Bands Assisted with Photonics," i 2021 European Conference on Optical Communication, ECOC 2021, 2021.
[185]
[186]
X. Pang et al., "Up to 6 Gbps Mid-Infrared Free-Space Transmission with a Directly Modulated Quantum Cascade Laser," i 2021 European Conference on Optical Communication, ECOC 2021, 2021.
[187]
O. Ozolins et al., "300 Gbps Short-Reach C-Band Optical Links," i 2020 22nd international conference on transparent optical networks (ICTON 2020), 2020.
[188]
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Icke refereegranskade

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2024-04-21 02:08:00