| Literature DB >> 33267408 |
Weishu Li1, Yuxiu Zhao1, Qi Wang2, Jian Zhou1.
Abstract
Entropy, founded in 1999, is an emerging international journal in the field of entropy and information studies. In the year of 2018, the journal enjoyed its 20th anniversary, and therefore, it is quite reasonable and meaningful to conduct a retrospective as its birthday gift. In accordance with Entropy's distinctive name and research area, this paper creatively provides a bibliometric analysis method to not only look back at the vicissitude of the entire entropy topic, but also witness the journal's growth and influence during this process. Based on 123,063 records extracted from the Web of Science, the work in sequence analyzes publication outputs, high-cited literature, and reference co-citation networks, in the aspects of the topic and the journal, respectively. The results indicate that the topic now has become a tremendous research domain and is still roaring ahead with great potentiality, widely researched by different kinds of disciplines. The most significant hotspots so far are suggested as the theoretical or practical innovation of graph entropy, permutation entropy, and pseudo-additive entropy. Furthermore, with the rapid growth in recent years, Entropy has attracted many dominant authors of the topic and experiences a distinctive geographical publication distribution. More importantly, in the midst of the topic, the journal has made enormous contributions to major research areas, particularly being a spear head in the studies of multiscale entropy and permutation entropy.Entities:
Keywords: CiteSpace; bibliometrics; co-citation; entropy; hotspots
Year: 2019 PMID: 33267408 PMCID: PMC7515197 DOI: 10.3390/e21070694
Source DB: PubMed Journal: Entropy (Basel) ISSN: 1099-4300 Impact factor: 2.524
Figure 1Annual number of the topic’s publications from 1999–2018.
Figure 2Annual number of the top-five most productive journals’ publications from 1999–2018.
The top-20 most productive authors of the topic from 1999–2018.
| Rank | Author | Institution | Country or Region | TP | TC | TC/TP |
| >2000 | >1000 | >500 | >200 | >100 | >50 | >20 | >10 |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 1 | Chen LG | Naval Univ Engn | China | 257 | 5397 | 23.10 | 40 | 1 | 1 | 3 | 24 | 98 | 165 | ||
| 2 | Sun FR | Naval Univ Engn | China | 222 | 5194 | 23.40 | 38 | 1 | 1 | 1 | 19 | 91 | 152 | ||
| 3 | Plastino A | La Plata Natl Univ | Argentina | 211 | 3470 | 16.45 | 32 | 1 | 5 | 14 | 46 | 90 | |||
| 4 | Shen BG | Chinese Acad Sci | China | 190 | 5840 | 30.74 | 35 | 1 | 5 | 8 | 21 | 69 | 112 | ||
| 5 | Sun JR | Chinese Acad Sci | China | 170 | 5507 | 32.39 | 33 | 1 | 5 | 8 | 19 | 63 | 105 | ||
| 6 | Hlil EK | Univ J Fourier | France | 166 | 1631 | 9.83 | 21 | 1 | 23 | 61 | |||||
| 7 | Kumar A | Indian Inst Technol | India | 157 | 1886 | 12.01 | 25 | 2 | 6 | 27 | 46 | ||||
| 8 | Tan ZC | Chinese Acad Sci | China | 153 | 1358 | 8.88 | 18 | 2 | 17 | 38 | |||||
| 9 | Yeh JW | Natl Tsing Hua Univ | Taiwan | 144 | 11,589 | 80.48 | 52 | 1 | 1 | 1 | 15 | 30 | 53 | 95 | 111 |
| 10 | Veldhuis JD | Mayo Clin | USA | 144 | 4235 | 29.41 | 37 | 7 | 24 | 72 | 109 | ||||
| 11 | Smirnova NN | Natl Res Lobachevsky State Univ | Russia | 144 | 700 | 4.86 | 13 | 2 | 18 | ||||||
| 12 | Singh VP | Texas A&M Univ | USA | 139 | 1969 | 14.17 | 24 | 5 | 35 | 69 | |||||
| 13 | Obada ASF | Al Azher Univ | Egypt | 131 | 1188 | 9.07 | 19 | 19 | 46 | ||||||
| 14 | Zhang Y | Univ Sci & Technol Beijing | China | 129 | 5693 | 44.13 | 35 | 1 | 1 | 4 | 10 | 21 | 58 | 75 | |
| 15 | Yu SC | Chungbuk Natl Univ | South Korea | 128 | 2799 | 21.87 | 24 | 1 | 1 | 1 | 4 | 11 | 28 | 44 | |
| 16 | Liaw PK | Univ Tennessee | USA | 127 | 5331 | 41.98 | 32 | 1 | 2 | 4 | 8 | 19 | 51 | 68 | |
| 17 | Du YW | Nanjing Univ | China | 121 | 3379 | 27.93 | 31 | 1 | 1 | 5 | 13 | 47 | 75 | ||
| 18 | Hu FX | Chinese Acad Sci | China | 119 | 4456 | 37.45 | 29 | 1 | 5 | 7 | 15 | 43 | 71 | ||
| 19 | Kumar GS | CSIR Indian Inst Chem Biol | India | 119 | 2756 | 23.16 | 29 | 4 | 13 | 50 | 81 | ||||
| 20 | Cheikhrouhou A | Digital Res Ctr Sfax | Tunisia | 118 | 1337 | 11.33 | 22 | 3 | 26 | 44 |
Abbreviations: TP: total publications; TC: total citations; TC/TP: total citations per publication; h: h-index; >2000, >1000, >500, >200, >100, >50, >20, and >10: Number of papers with more than 2000, 1000, 500, 200, 100, 50, 20, and 10 citations.
The top-20 most productive authors of Entropy from 1999–2018.
| Rank | Author | Institution | Country or Region | TP | TC | TC/TP |
| >100 | >50 | >20 | >10 | >5 |
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 1 | Baleanu D | Cankaya Univ | Turkey | 17 | 168 | 9.88 | 7 | 2 | 7 | 10 | ||
| 2 | Singh VP | Texas A&M Univ | USA | 17 | 95 | 5.59 | 5 | 1 | 4 | 5 | ||
| 3 | Plastino A | La Plata Natl Univ | Argentina | 16 | 77 | 4.81 | 5 | 3 | 5 | |||
| 4 | Machado JAT | Polytechnic Institute Of Porto | Portugal | 14 | 127 | 9.07 | 5 | 3 | 5 | 5 | ||
| 5 | Lopes AM | Univ Porto | Portugal | 12 | 93 | 7.75 | 4 | 2 | 3 | 3 | ||
| 6 | Feidt M | Univ Lorraine | France | 11 | 74 | 6.73 | 4 | 1 | 1 | 3 | ||
| 7 | Isaacson LK | Univ Utah | USA | 11 | 33 | 3 | 4 | 3 | ||||
| 8 | Rashidt MM | Univ Birmingham | England | 10 | 143 | 14.3 | 7 | 1 | 3 | 4 | 8 | |
| 9 | Principe JC | Univ Florida | USA | 10 | 64 | 6.4 | 5 | 4 | 6 | |||
| 10 | Zhang YD | Univ Leicester | England | 9 | 509 | 56.56 | 8 | 2 | 4 | 6 | 8 | 9 |
| 11 | Ay N | Max Planck Inst Math Sci | Germany | 9 | 126 | 14 | 5 | 1 | 1 | 5 | 6 | |
| 12 | Chen LG | Naval Univ Engn | China | 9 | 95 | 10.56 | 4 | 1 | 2 | 2 | 3 | |
| 13 | Seneff S | MIT | United States | 8 | 162 | 18 | 6 | 1 | 2 | 5 | 8 | |
| 14 | Porta A | Univ Milan | Italy | 8 | 121 | 15.13 | 4 | 1 | 2 | 3 | 4 | |
| 15 | Livadiotis G | Southwest Res Inst | United States | 8 | 76 | 9.5 | 4 | 3 | 3 | 4 | ||
| 16 | Ibrahim RW | Univ Malaya | Malaysia | 8 | 57 | 7.13 | 4 | 3 | 4 | |||
| 17 | Barranco-Jimenez MA | Inst Politecn Nacl | Mexico | 8 | 45 | 5.63 | 4 | 2 | 3 | |||
| 18 | Casas M | Univ Illes Balears | Spain | 8 | 42 | 5.25 | 4 | 1 | 3 | |||
| 19 | Markechova D | Constantine Philosopher Univ Nitra | Slovakia | 8 | 22 | 2.75 | 2 | 1 | 2 | |||
| 20 | Chen BD | Xi An Jiao Tong Univ | China | 5 | 101 | 11.22 | 6 | 1 | 5 | 7 |
Abbreviations: TP: total publications; TC: total citations; TC/TP: total citations per publication; h: h-index; >100, >50, >20, >10, and >5: Number of papers with more than 100, 50, 20, 10, and 5 citations.
Figure 3The network of the top-20 most productive countries or regions of the topic from 1999–2018.
Figure 4The network of the top-20 most productive countries or regions for Entropy from 1999–2018.
Figure 5The network of the top-20 most productive foundations of Entropy from 1999–2018 (including ties).
The top-20 most cited documents of the topic from 1999–2018.
| Title | Author | Year | Journal | Category | TC | TC/Year | NA | NI | NR |
|---|---|---|---|---|---|---|---|---|---|
| Compressed sensing | Donoho DL | 2006 | IEEE Transactions on Information Theory | Computer Science | 12,392 | 953.23 | 1 | 1 | 44 |
| Maximum entropy modeling of species geographic distributions | Phillips SJ et al. | 2006 | Ecological Modeling | Ecology | 5798 | 446.00 | 3 | 4 | 90 |
| The large-N limit of superconformal field theories and supergravity | Maldacena J | 1999 | International Journal of Theoretical Physics | Physics | 5000 | 250.00 | 1 | 1 | 89 |
| Inference of macromolecular assemblies from crystalline state | Krissinel E et al. | 2007 | Journal of Molecular Biology | Biochemistry & Molecular Biology | 4430 | 369.17 | 2 | 1 | 119 |
| The cosmological simulation code GADGET-2 | Springel V | 2005 | Monthly Notices of the Royal Astronomical Society | Astronomy & Astrophysics | 3421 | 244.36 | 1 | 1 | 122 |
| A tutorial on support vector regression | Smola AJ et al. | 2004 | Statistics and Computing | Computer Science | 3216 | 214.40 | 2 | 2 | 139 |
| Fast and robust fixed-point algorithms for independent component analysis | Hyvärinen A | 1999 | IEEE Transactions on Neural Networks | Computer Science | 3196 | 159.80 | 1 | 1 | 37 |
| Supercooled liquids and the glass transition | Debenedetti PG et al. | 2001 | Nature | Multidisciplinary Sciences | 2612 | 145.11 | 2 | 2 | 109 |
| Interactions with aromatic rings in chemical and biological recognition | Meyer EA et al. | 2003 | Angewandte Chemie International Edition | Chemistry, Multidisciplinary | 2563 | 160.19 | 3 | 2 | 669 |
| Physiological time-series analysis using approximate entropy and sample entropy | Richman JS et al. | 2000 | American Journal of Physiology-Heart and Circulatory Physiology | Cardiac & Cardiovascular Systems | 2441 | 128.47 | 2 | 2 | 34 |
| Modeling of species distributions with MaxEnt: New extensions and a comprehensive evaluation | Phillips SJ et al. | 2008 | Ecography | Biodiversity Conservation | 2355 | 214.09 | 2 | 2 | 38 |
| Size-distribution analysis of macromolecules by sedimentation velocity ultracentrifugation and Lamm equation modeling | Schuck P | 2000 | Biophysical Journal | Biophysics | 2339 | 123.11 | 1 | 1 | 61 |
| Recent developments in magnetocaloric materials | Gschneidner Jr KA et al. | 2005 | Reports on Progress in Physics | Physics, Multidisciplinary | 2077 | 148.36 | 3 | 1 | 255 |
| Nanostructured high-entropy alloys with multiple principal elements: Novel alloy design concepts and outcomes | Yeh JW et al. | 2004 | Advanced Engineering Materials | Materials Science, Multidisciplinary | 2032 | 135.47 | 8 | 5 | 26 |
| Survey over image thresholding techniques and quantitative performance evaluation | Sezgin M et al. | 2004 | Journal of Electronic Imaging | Engineering | 1995 | 133.00 | 2 | 2 | 141 |
| Quantum discord: A measure of the quantumness of correlations | Ollivier H et al. | 2002 | Physical Review Letters | Physics, Multidisciplinary | 1941 | 114.18 | 2 | 1 | 18 |
| A Rietveld-analysis program RIETAN-98 and its applications to zeolites | Izumi F et al. | 2000 | European Powder Diffraction, PTS 1 and 2 | Materials Science, Multidisciplinary | 1901 | 100.05 | 2 | 2 | 17 |
| A statistical explanation of MaxEnt for ecologists | Elith J et al. | 2011 | Diversity and Distributions | Biodiversity Conservation | 1887 | 235.88 | 6 | 5 | 58 |
| Transition-metal-based magnetic refrigerants for room-temperature applications | Tegus O et al. | 2002 | Nature | Multidisciplinary Sciences | 1787 | 105.12 | 4 | 1 | 12 |
| Efficient, multiple-range random walk algorithm to calculate the density of states | Wang FG et al. | 2001 | Physical Review Letters | Physics, Multidisciplinary | 1759 | 97.72 | 2 | 1 | 29 |
| Average Values | 2003 | 3257 | 223.88 | 2.5 | 1.9 | 105 |
Abbreviations: TC: total citations; TC/Year: total citations per year; NA: number of authors; NI: number of institutions; NR: number of references.
The top-20 most cited documents of the topic from 2014–2018.
| Title | Author | Year | Journal | Category | TC | TC/Year | NA | NI | NR |
|---|---|---|---|---|---|---|---|---|---|
| Planck 2013 results. XXII. Constraints on inflation | Planck Collaboration | 2014 | Astronomy & Astrophysics | Astronomy & Astrophysics | 1276 | 255.20 | 244 | 99 | 333 |
| Microstructures and properties of high-entropy alloys | Zhang Y et al. | 2014 | Progress in Materials Science | Materials Science, Multidisciplinary | 1169 | 233.80 | 7 | 5 | 297 |
| A fracture-resistant high-entropy alloy for cryogenic applications | Gludovatz B et al. | 2014 | Science | Multidisciplinary Sciences | 871 | 174.20 | 6 | 6 | 50 |
| First-principles calculations for point defects in solids | Freysoldt C et al. | 2014 | Reviews of Modern Physics | Physics, Multidisciplinary | 646 | 129.20 | 7 | 3 | 384 |
| Quantifying coherence | Baumgratz T et al. | 2014 | Physical Review Letters | Physics, Multidisciplinary | 574 | 114.80 | 3 | 1 | 41 |
| A critical review of high entropy alloys and related concepts | Miracle DB et al. | 2017 | Acta Materialia | Materials Science, Multidisciplinary | 551 | 275.50 | 2 | 2 | 349 |
| Caloric materials near ferroic phase transitions | Moya X et al. | 2014 | Nature Materials | Chemistry, Physical | 487 | 97.40 | 3 | 2 | 151 |
| G_mmpbsa-A GROMACS tool for high-throughput MM-PBSA calculations | Kumari R et al. | 2014 | Journal of Chemical Information and Modeling | Chemistry, Medicinal | 476 | 95.20 | 3 | 2 | 102 |
| Rarefaction and extrapolation with hill numbers: A framework for sampling and estimation in species diversity studies | Chao A et al. | 2014 | Ecological Monographs | Ecology | 437 | 87.40 | 7 | 5 | 70 |
| Cucurbiturils: From synthesis to high-affinity binding and catalysis | Assaf KI et al. | 2015 | Chemical Society Reviews | Chemistry, Multidisciplinary | 429 | 107.25 | 2 | 1 | 242 |
| The MM/PBSA and MM/GBSA methods to estimate ligand-binding affinities | Genheden S et al. | 2015 | Expert Opinion on Drug Discovery | Pharmacology & Pharmacy | 425 | 106.25 | 2 | 2 | 105 |
| High-entropy alloys: A critical review | Tsai MH et al. | 2014 | Materials Research Letters | Materials Science, Multidisciplinary | 425 | 85.00 | 2 | 2 | 143 |
| Metastable high-entropy dual-phase alloys overcome the strength-ductility trade-off | Li ZM et al. | 2016 | Nature | Multidisciplinary Sciences | 420 | 140.00 | 5 | 2 | 30 |
| The ensemble nature of allostery | Motlagh HN et al. | 2014 | Nature | Multidisciplinary Sciences | 401 | 80.20 | 4 | 1 | 108 |
| Biomedical applications of supramolecular systems based on host-guest interactions | Ma X et al. | 2015 | Chemical Reviews | Chemistry, Multidisciplinary | 354 | 88.50 | 2 | 1 | 369 |
| Three dimensional mesoscopic simulation of magnetic field effect on natural convection of nanofluid | Sheikholeslami M et al. | 2015 | International Journal of Heat and Mass Transfer | Thermodynamics | 351 | 87.75 | 2 | 3 | 25 |
| Entropic stabilization of mixed A-cation ABX (3) metal halide perovskites for high performance perovskite solar cells | Yi CY et al. | 2016 | Energy & Environmental Science | Chemistry, Multidisciplinary | 349 | 116.33 | 9 | 1 | 33 |
| Self-assembly of colloidal nanocrystals: From intricate structures to functional materials | Boles MA et al. | 2016 | Chemical Reviews | Chemistry, Multidisciplinary | 318 | 106.00 | 3 | 4 | 748 |
| Black holes and the butterfly effect | Shenker SH et al. | 2014 | Journal of High Energy Physics | Physics, Particles & Fields | 292 | 58.40 | 2 | 2 | 69 |
| A precipitation-hardened high-entropy alloy with outstanding tensile properties | He JY et al. | 2016 | Acta Materialia | Materials Science, Multidisciplinary | 283 | 94.33 | 10 | 4 | 44 |
| Average Values | 2015 | 527 | 126.64 | 16.3 | 7.4 | 185 |
Abbreviations: TC: total citations; TC/Year: total citations per year; NA: number of authors; NI: number of institutions; NR: number of references.
Figure 6The proportion change of the categories of the topic from 1999–2018.
The top-20 most cited documents of Entropy from 1999–2018.
| Title | Author | Year | Special Issues or Subject | Special Issues or Not | TC | TC/Year | NA | NI | NR |
|---|---|---|---|---|---|---|---|---|---|
| Exploration and development of high entropy alloys for structural applications | Miracle DB et al. | 2014 | High Entropy Alloys | Y | 221 | 44.20 | 6 | 1 | 81 |
| Permutation entropy and its main biomedical and econophysics applications: A review | Zanin M et al. | 2012 | Concepts of Entropy and Their Applications | Y | 215 | 30.71 | 4 | 8 | 110 |
| Use of maximum entropy modeling in wildlife research | Baldwin RA | 2009 | Maximum Entropy | Y | 210 | 21.00 | 1 | 1 | 40 |
| Black holes, cosmological solutions, future singularities, and their thermodynamical properties in modified gravity theories | de la Cruz-Dombriz A et al. | 2012 | Modified Gravity: From Black Holes Entropy to Current Cosmology | Y | 158 | 22.57 | 2 | 3 | 202 |
| Families of alpha-beta-and gamma-divergences: Flexible and robust measures of similarities | Cichocki A et al. | 2010 | Generalized Divergences | N | 128 | 14.22 | 2 | 3 | 85 |
| Searching for next single-phase high-entropy alloy compositions | Gao MC et al. | 2013 | High Entropy Alloys | Y | 125 | 20.83 | 2 | 2 | 35 |
| Entropy generation analysis of desalination technologies | Mistry KH et al. | 2011 | Entropy Generation Minimization | Y | 120 | 15.00 | 6 | 2 | 45 |
| Preclinical diagnosis of magnetic resonance (MR) brain images via discrete wavelet packet transform with Tsallis entropy and generalized eigenvalue proximal support vector machine (GEPSVM) | Zhang YD et al. | 2015 | Wavelet Entropy: Computation and Applications | Y | 117 | 29.25 | 5 | 6 | 41 |
| Vessel pattern knowledge discovery from AIS data: A framework for anomaly detection and route prediction | Pallotta G et al. | 2013 | Science and Technology Organization | N | 116 | 19.33 | 3 | 1 | 47 |
| Thermodynamics of thermoelectric phenomena and applications | Goupil C et al. | 2011 | Local Entropy Production | N | 114 | 14.25 | 5 | 4 | 156 |
| Application of entropy measures on intrinsic mode functions for the automated identification of focal electroencephalogram signals | Sharma R et al. | 2015 | Entropy and Electroencephalography | Y | 104 | 26.00 | 3 | 2 | 75 |
| Multivariate multi-scale permutation entropy for complexity analysis of Alzheimer’s disease EEG | Morabito FC et al. | 2012 | Concepts of Entropy and Their Applications | Y | 103 | 14.71 | 6 | 3 | 24 |
| Optimal multi-level thresholding based on maximum Tsallis entropy via an artificial bee colony approach | Zhang YD et al. | 2011 | Tsallis Entropy | Y | 101 | 12.62 | 2 | 1 | 28 |
| Time series analysis using composite multiscale entropy | Wu SD et al. | 2013 | Multiscale Entropy | N | 99 | 16.5 | 5 | 4 | 22 |
| Axiomatic characterizations of information measures | Csiszár I | 2008 | Facets of Entropy-Papers presented at the workshop in Copenhagen | Y | 96 | 8.73 | 1 | 1 | 62 |
| Bearing fault diagnosis based on multiscale permutation entropy and support vector machine | Wu SD et al. | 2012 | Permutation Entropy | N | 92 | 13.14 | 5 | 3 | 20 |
| On the thermodynamics of friction and wear-a review | Amiri M et al. | 2010 | Entropy and Friction | Y | 89 | 9.89 | 2 | 1 | 131 |
| Fruit classification by wavelet-entropy and feedforward neural network trained by fitness-scaled chaotic ABC and biogeography-based optimization | Wang S et al. | 2015 | Machine Learning and Entropy: Discover unknown unknowns in complex data sets | Y | 83 | 20.75 | 6 | 4 | 46 |
| Multicomponent and high entropy alloys | Cantor B | 2014 | High Entropy Alloys | Y | 80 | 16.00 | 1 | 1 | 45 |
| The multiscale entropy algorithm and its variants: A review | Humeau-Heurtier A | 2015 | Multiscale Entropy and Its Applications in Medicine and Biology | Y | 78 | 19.50 | 1 | 1 | 44 |
| Average Values | 2012 | 122 | 19.46 | 3.4 | 2.6 | 66.95 |
Abbreviations: TC: total citations; TC/Year: total citations per year; NA: number of authors; NI: number of institutions; NR: number of references.
Figure 7The reference co-citation network of the topic from 1999–2018.
The details of the topic’s top-11 clusters.
| Cluster ID | Proportion | Silhouette | Mean Year of Publications | Label (TF-IDF) | Label (Log-Likelihood Ratio) | Label Terms (Mutual Information) |
|---|---|---|---|---|---|---|
| 1 | 6.72% | 0.992 | 2012 | graph entropy | graph entropy | graph entropy |
| 2 | 6.23% | 0.962 | 2009 | Tsallis | relative entropy | conditional Renyi entropy |
| 3 | 5.41% | 0.989 | 2012 | multiscale entropy | permutation entropy | detecting weak abrupt information |
| 4 | 4.59% | 0.951 | 2001 | composability | Clausius entropy | |
| 6 | 4.10% | 0.928 | 2007 | ads-cft correspondence | entropy function | black hole |
| 7 | 3.44% | 0.995 | 2005 | entropy dimension | local entropy theory | entropy system |
| 8 | 3.11% | 0.987 | 2013 | black holes | entanglement entropy | entanglement entropy |
| 11 | 2.79% | 0.973 | 2007 | residual entropy | order statistics | concomitants of record values |
| 12 | 2.46% | 0.978 | 2011 | Tsallis entropy | pseudo-additive entropy | different entropy formalism |
| 15 | 1.97% | 0.987 | 2009 | sample entropy | ordinal pattern | multiscale permutation |
| 22 | 1.31% | 0.993 | 2010 | maximum entropy | water engineering | dynamical system |
Figure 8The reference co-citation network of the topic by timeline from 1999–2018.
The details of Entropy’s top-13 clusters.
| Cluster ID | Proportion | Silhouette | Mean Year of Publications | Label (TF-IDF) | Label (Log-Likelihood Ratio) | Label Terms (Mutual Information) |
|---|---|---|---|---|---|---|
| 0 | 8.03% | 0.919 | 2010 | fault diagnosis | EEG signal | EEG signal |
| 1 | 5.42% | 0.863 | 2009 | estimating information transfer | information-theoretic perspective | information measures |
| 2 | 4.96% | 0.909 | 2008 | maximum entropy | entropy production principle | MaxEnt formalism |
| 4 | 3.61% | 0.918 | 2008 | nonextensive Tsallis | nonadditive entropy S | nonadditive entropy |
| 5 | 2.62% | 0.976 | 2009 | genetic algorithm-based identification | genetic algorithm-based identification | parameter identification |
| 6 | 2.53% | 0.950 | 2008 | street network dispersion | statistical distribution | algebraic structures |
| 8 | 2.17% | 0.910 | 2010 | optimization perspective | transfer entropy | transfer entropy |
| 10 | 1.99% | 0.981 | 2006 | dark energy problem | black hole entropy | black holes |
| 11 | 1.90% | 0.969 | 2007 | discrete wavelet entropy | wavelet threshold de-noising | wavelet threshold de-noising |
| 12 | 1.71% | 0.990 | 2010 | irrigation districts | river cross-section | entropy applications |
| 13 | 1.62% | 0.965 | 2013 | complexity measure | complexity measure | non extensive statistical physics |
| 14 | 1.44% | 0.988 | 2009 | entropy method | entropy principle | Volterra polynomials |
| 15 | 1.35% | 1.000 | 2008 | cultural naturalism | cultural naturalism | multiscale entropy analysis |
Figure 9The reference co-citation network of Entropy from 1999–2018.
Figure 10The reference co-citation network of Entropy by timeline from 1999–2018.
Main comparisons between the topic and Entropy.
| Feature | Entropy Topic | |
|---|---|---|
| Publication Trend | Owing a tremendous base; at the origination of its exponential increment. | Experiencing an exponential increase with a sharp slope; becoming the most productive entropy-related journal since 2013. |
| Most Productive Author | Principally working in Asia and North America, especially China, which has 9 authors ranking in the top-20. | Attracting many celebrities of the topic; referring to more diversified institutions and nations. |
| Most Productive Country | Including the USA, China, Germany, France, etc.; largely located in Europe. | Including China, the USA, Italy, Spain, etc; but enjoying a more extensive geographical distribution. |
| International Cooperation | Mainly promoted by European countries where Germany and France play a pivotal role. | Enjoying a global cooperation network in which the USA, Italy, Germany, and Saudi Arabia exert major influence. |
| Most Productive Fund | Countless; primarily related to natural science foundations in Europe, North America, and China. | Similar to the topic’s situation, except that there are more small-sized Chinese funds coming to the fore. |
| Most Cited Paper | Including many reviews; referring to plenty of disciplines, especially highly related to physics, ecology, computer science, etc. | Relatively new; with good bibliometric indicator performance; mainly published in Special Issues. |
| Hotspots | Changed significantly during the last 20 years; mainly including three areas at present, i.e., graph entropy, permutation entropy, and pseudo-additive entropy. | Playing a leading role in multiscale entropy and permutation entropy; having several innovative areas, like transfer entropy, discrete wavelet entropy, etc. |