Laboratoire Photonique, Numérique et Nanosciences
In research, Laboratoire Photonique, Numérique et Nanosciences stands highest in Physical Sciences (#6,872 of 12,888 worldwide), 2022–2025. Relative to its size it is most specialised in Atomic and Molecular Physics, and Optics and Physics and Astronomy — Atomic and Molecular Physics, and Optics is 44.0× its share of world research.
- World rank, 2022–2025
- #11,600 of 28,054 · #4,707 all time
- Rank in France
- #463 of 1,422
- Research works
- 548 ▼ 52% vs 2013–17
- Citations
- 13k 24.2 per fractional work
- Top-10% rate
- 10.1% record average 16.5%
- Open access
- 32% world 28%
What is Laboratoire Photonique, Numérique et Nanosciences known for in research?
The fields where it stands highest, 2022–2025, ranked among every institution above the floor in each field.
| Field | World rank | Where that sits | Top-10% rate | Works | All time |
|---|---|---|---|---|---|
| Physical SciencesDomain | #6,872 of 12,888 | 9.4% | 60 | #3023 |
Each strip is that field’s whole ranked pool, with the notch where Laboratoire Photonique, Numérique et Nanosciences sits in it, in the colour of the band that rank falls in. The track under the rate is the rate itself: it carries no world mark, because the world rate differs by field (from about 6% to 21% in this record).
What does Laboratoire Photonique, Numérique et Nanosciences specialise in?
Where its research is concentrated relative to its size: Atomic and Molecular Physics, and Optics takes 44.0× the share of its output that it takes of world research.
- Atomic and Molecular Physics, and OpticsSubfield · 22.3 works44×
- Physics and AstronomyField · 26.4 works17×
Location quotient, a volume reading rather than an impact one. It surfaces small, lopsided specialities.
Field profile
Location quotient across every field it publishes in: outside the ring is more than an institution of this size would be expected to publish, inside it is less.
Rings at 0.5×, 1× and 2×. Widest outward: Physics and Astronomy, 16.7×. Every wedge is a field page.
- Physics and Astronomy 16.7×
- Materials Science 3.1×
- Engineering 1.9×
- Earth and Planetary Sciences 1.7×
- Biochemistry, Genetics and Molecular Biology 0.9×
- Neuroscience 0.7×
- Arts and Humanities 0.5×
- Computer Science 0.5×
- Chemistry 0.5×
- Mathematics 0.4×
- Medicine 0.3×
- Business, Management and Accounting 0.2×
- Chemical Engineering 0.1×
- Health Professions 0.1×
- Environmental Science 0.1×
- Social Sciences 0.1×
- Immunology and Microbiology 0.1×
- Decision Sciences 0.1×
- Agricultural and Biological Sciences 0.0×
Who are the top researchers at Laboratoire Photonique, Numérique et Nanosciences?
Ranked on the composite score, Philippe Tamarat, D. Massoubre and Adrien Borne lead among researchers whose main affiliation is Laboratoire Photonique, Numérique et Nanosciences.
- 1 Philippe Tamarat France · #407,420 worldwide 154 citations · 27 works
- 2 D. Massoubre France · #549,768 worldwide 63 citations · 23 works
- 3 Adrien Borne France · #611,425 worldwide 99 citations · 16 works
- 4 L. Largeau France · #827,500 worldwide 54 citations · 23 works
- 5 Clément Colin France · #969,093 worldwide 26 citations · 15 works
- 6 Romain Pacanowski France · #1,111,334 worldwide 22 citations · 30 works
- 7 Jianji Yang France · #1,143,066 worldwide 41 citations · 18 works
- 8 Kévin Vynck France · #1,176,334 worldwide 41 citations · 49 works
- 9 Vincenzo Ardizzone France · #1,269,477 worldwide 45 citations · 18 works
- 10 Xavier Granier France · #1,277,546 worldwide 31 citations · 46 works
Which keywords describe research at Laboratoire Photonique, Numérique et Nanosciences?
By fractional works in 2022–2025, weighted toward what it does more of than the world: Nonlinear Optics, Bose-Einstein Condensation, Optical Lattices, Fiber Lasers, Quantum Information, Superfluidity, Biosensors and Photonic Crystals.
- Single-Molecule Imaging
- X-Ray Spectroscopy
- Photovoltaics
- Microcavities
- Gas Sensing
- Attosecond Physics
- Silicon Photonics
- Optical Clocks
- Atomic Clocks
- Optical Modulators
- Entanglement
- Slow Light
- Ultrafast Lasers
- Microwave Photonics
- Biomedical Applications
- Ultracold Gases
- Photonic Crystals
- Biosensors
- Fiber Lasers
- Bose-Einstein Condensation
- Nonlinear Optics
- Optical Lattices
- Quantum Information
- Superfluidity
- Quantum Simulation
- Microresonators
- Molecular Dynamics
- Optical Frequency Combs
- Raman Lasers
- Cultural Heritage
- Metamaterials
- Crystal Growth
- Nanophotonics
- Super-Resolution Imaging
- Frequency Conversion
- Colloidal Crystals
- High-Harmonic Generation
- Nanocavities
- Solar Cells
- Fluorescent Proteins
Size is fractional works in 2022–2025 in the topics tagged with each word; colour is the word's share of this institution's work against its share of the world's. The 40 words are chosen for being large and distinctive. Each links to the topic it comes from most.
All 40 words, with their numbers
- Nonlinear Optics6▲ 79×4 topics
- Bose-Einstein Condensation5▲ 190×2 topics
- Optical Lattices4▲ 96×3 topics
- Fiber Lasers4▲ 63×3 topics
- Quantum Information4▲ 52×2 topics
- Biosensors4▲ 12×7 topics
- Superfluidity4▲ 138×2 topics
- Photonic Crystals4▲ 47×5 topics
- Quantum Simulation4▲ 67×1 topic
- Ultracold Gases4▲ 203×1 topic
- Microresonators4▲ 60×3 topics
- Biomedical Applications3▲ 3.9×16 topics
- Molecular Dynamics3▲ 26×3 topics
- Microwave Photonics3▲ 46×2 topics
- Optical Frequency Combs3▲ 73×1 topic
- Ultrafast Lasers3▲ 73×1 topic
- Raman Lasers3▲ 34×2 topics
- Slow Light3▲ 80×2 topics
- Cultural Heritage3▲ 6.9×8 topics
- Entanglement3▲ 26×3 topics
- Metamaterials2▲ 26×5 topics
- Optical Modulators2▲ 24×3 topics
- Crystal Growth2▲ 12×3 topics
- Atomic Clocks2▲ 358×1 topic
- Nanophotonics2▲ 33×3 topics
- Optical Clocks2▲ 358×1 topic
- Super-Resolution Imaging2▲ 101×2 topics
- Silicon Photonics2▲ 28×2 topics
- Frequency Conversion2▲ 63×3 topics
- Attosecond Physics2▲ 114×1 topic
- Colloidal Crystals2▲ 57×1 topic
- Gas Sensing2▲ 57×2 topics
- High-Harmonic Generation2▲ 114×1 topic
- Microcavities2▲ 22×2 topics
- Nanocavities2▲ 87×1 topic
- Photovoltaics2▲ 16×3 topics
- Solar Cells2▲ 12×5 topics
- X-Ray Spectroscopy2▲ 57×2 topics
- Fluorescent Proteins2▲ 110×1 topic
- Single-Molecule Imaging2▲ 110×1 topic
Which research topics does Laboratoire Photonique, Numérique et Nanosciences publish most on?
By volume in 2022–2025: Cold Atom Physics and Bose-Einstein Condensates, Advanced Fiber Laser Technologies, Advanced Frequency and Time Standards and Photonic Crystals and Applications.
Area is fractional works; colour is the subfield each topic belongs to.
- 1 Cold Atom Physics and Bose-Einstein Condensates Atomic and Molecular Physics, and Optics 4 works
- 2 Advanced Fiber Laser Technologies Atomic and Molecular Physics, and Optics 3 works
- 3 Advanced Frequency and Time Standards Atomic and Molecular Physics, and Optics 2 works
- 4 Photonic Crystals and Applications Atomic and Molecular Physics, and Optics 2 works
- 5 Laser-Matter Interactions and Applications Atomic and Molecular Physics, and Optics 2 works
- 6 Photonic and Optical Devices Electrical and Electronic Engineering 2 works
- 7 Advanced Fluorescence Microscopy Techniques Biophysics 2 works
- 8 Photonic Crystal and Fiber Optics Electrical and Electronic Engineering 1 works
- 9 Mechanical and Optical Resonators Atomic and Molecular Physics, and Optics 1 works
- 10 Metamaterials and Metasurfaces Applications Electronic, Optical and Magnetic Materials 1 works
How open and international is its research?
Against the world’s own shares — the tick on each track. Both are shares of its output, so they sit on one scale and can be read against each other as well as against the world.
World: 28% of research is openly available.
World: 19% is written across borders.
How has Laboratoire Photonique, Numérique et Nanosciences's research output changed?
Output in 2018–2022 was 52% lower than in 2013–2017.
The same series as a ribbon — one cell per year, darker for more. The line above answers how much; this answers when.
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Research measures only: rankings here say nothing about teaching, admissions or student experience. Comparable institutions and collaboration partners are in the interactive view on the map.