Progress in Quantum Electronics

Papers
(The TQCC of Progress in Quantum Electronics is 15. The table below lists those papers that are above that threshold based on CrossRef citation counts [max. 250 papers]. The publications cover those that have been published in the past four years, i.e., from 2020-04-01 to 2024-04-01.)
ArticleCitations
Growth, transfer printing and colour conversion techniques towards full-colour micro-LED display193
Recent progress in and perspectives of underwater wireless optical communication134
Recent advances and applications of random lasers and random fiber lasers103
Generation, optimization, and application of ultrashort femtosecond pulse in mode-locked fiber lasers89
Recent advances in optoelectronic and microelectronic devices based on ultrawide-bandgap semiconductors51
III-nitride semiconductor lasers grown on Si38
Evolution of optical wireless communication for B5G/6G34
Survey of energy-autonomous solar cell receivers for satellite–air–ground–ocean optical wireless communication33
High-temperature terahertz quantum cascade lasers30
Visible solid-state lasers based on Pr3+ and Tb3+30
Photonic Ge-Sb-Te phase change metamaterials and their applications27
Mid-infrared supercontinuum generation in soft-glass specialty optical fibers: A review26
III-nitride nanostructures: Emerging applications for Micro-LEDs, ultraviolet photonics, quantum optoelectronics, and artificial photosynthesis25
Spectral coherence, Part I: Passive-resonator linewidth, fundamental laser linewidth, and Schawlow-Townes approximation25
Er-doped crystalline active media for ~ 3 μm diode-pumped lasers24
Hexagonal boron nitride: Epitaxial growth and device applications20
Light–matter interaction empowered by orbital angular momentum: Control of matter at the micro- and nanoscale16
Symmetric and asymmetric photonic spin-orbit interaction in metasurfaces16
Rectifying antennas for energy harvesting from the microwaves to visible light: A review16
Watt-level ultrafast laser inscribed thulium waveguide lasers15
Advances in single crystals and thin films of chiral hybrid metal halides15
Two dimensional photonic crystal slab biosensors using label free refractometric sensing schemes: A review15
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