Publications

The following publications were authored or co-authored by NITheCS Associates who included their NITheCS affiliation. These records are sourced from Scopus.

  1. Abdalla H.; Razzaque S.; Böttcher M.; Finke J.; Domínguez A., Influence of cosmic voids on the propagation of TeV gamma-rays and the puzzle of GRB 221009A, Monthly Notices of the Royal Astronomical Society, 532 (1), pp. 198.

  2. Adams B.; Petruccione F., Nature's novel materials: A review of quantum biology, Encyclopedia of Condensed Matter Physics, V4:593C176A194B176:GA1:G194.

  3. Aibinu M.O.; Mahomed F.M.; Jorgensen P.E., Solutions of fractional differential models by using Sumudu transform method and its hybrid, Partial Differential Equations in Applied Mathematics 11, art. no. 100872.

  4. Akinpelu S.B.; Abolade S.A.; Okafor E.; Obada D.O.; Ukpong A.M.; Kumar R. S.; Healy J.; Akande A., Interpretable machine learning methods to predict the mechanical properties of ABX3 perovskites, Results in Physics 65, art. no. 107978.

  5. Aldowma T.; Razzaque S., Deep Neural Networks for estimation of gamma-ray burst redshifts, Monthly Notices of the Royal Astronomical Society 529 (3), pp. 2676.

  6. Alfeus M., Navigating the JIBAR transition: Progress, impacts, readiness, and analytical insights, South African Journal of Science, 120 (3-4).

  7. Alfeus M.; Fitzhenry K.; Lederer A., Stochastic Default Risk Estimation Evidence from the South African Financial Market, Computational Economics 64 (3), pp. 1715.

  8. Alfeus M.; Harvey J.; Maphatsoe P., Improving realised volatility forecast for emerging markets, Journal of Economics and Finance 2024.

  9. Alfeus M.; Nikitopoulos C.S.; Overbeck L., Implied roughness in the term structure of oil market volatility, Quantitative Finance 24 (3-4), pp. 347.

  10. Asefa F.G.; Arega A.A.; Kebede G.G.; Mekonnen Y.S.; Obodo K.O., Electronic and Optical Properties of Sn/Ge-Substituted 2D Dion-Jacobson Phase (3-AMPY)4Pb4I16 Perovskite for Photovoltaic Applications: A First Principle Study, Journal of Physical Chemistry C 128 (34), pp. 14158.

  11. Asmare E.; Bekri N.; Nchinda L.T.; Hone F.G.; Mammo W.; Krüger T.P.J.; Tegegne N.A., Conformation-Dictated Aggregation Photophysics in Isoindigo-Based Copolymers, Journal of Physical Chemistry C 128 (40), pp. 16904.

  12. Assefa G.T.; Botha J.L.; van Heerden B.; Kyeyune F.; Krüger T.P.J.; Gwizdala M., ApcE plays an important role in light-induced excitation energy dissipation in the Synechocystis PCC6803 phycobilisomes, Photosynthesis Research 160 (1), pp. 17.

  13. Axelrod G.; Conradie W., Prefixed Tableaux and Decision Procedures for Many-Valued Modal Logics, CEUR Workshop Proceedings 3717, pp. 10.

  14. Badrodien I.; Neethling P.H.; Bosman G.W., Improved image contrast in nonlinear light-sheet fluorescence microscopy using i2PIE Pulse compression, Scientific Reports 14 (1), art. no. 12770.

  15. Bag T.; Barman R.; Das S.A.; Sivakumar V.; Singh V., Nitric oxide cooling emission during geomagnetic storm: Case studies, Advances in Space Research 73 (1), pp. 747.

  16. Bag T.; Ogawa Y.; Sivakumar V., Thermospheric NO Cooling During 2003 October “Halloween Storm”: Revisited, Journal of Geophysical Research: Space Physics 129 (7), art. no. e2024JA032805.

  17. Bag T.; Sivakumar V.; Ogawa Y., Impact of Interplanetary Shock on Thermospheric Cooling Emission: A Case Study, Journal of Geophysical Research: Space Physics 129 (10), art. no. e2024JA033176.

  18. Banerjee A.; Roy P., Bounds on TT¯ deformation from entanglement, Journal of High Energy Physics 2024 (10), art. no. 64.

  19. Baril J.-L.; Maréchal R.; Prodinger H., Skew Dyck paths with air pockets, Aequationes Mathematicae.

  20. Barnard M.; Razzaque S.; Joshi J.C., Modelling very high-energy gamma rays detected from GRB 190829A: A comparative study, Proceedings of Science 459, art. no. 017.

  21. Barnard M.; Razzaque S.; Joshi J.C., Very high energy gamma-rays from GRB 180720B and GRB 190829A with external Compton emission, Monthly Notices of the Royal Astronomical Society 527 (4), pp. 11893.

  22. Barozi V.; Chakraborty S.; Govender S.; Morgan E.; Ramahala R.; Graham S.C.; Bishop N.T.; Tastan Bishop Ö., Revealing SARS-CoV-2 Mpro mutation cold and hot spots: Dynamic residue network analysis meets machine learning, Computational and Structural Biotechnology Journal 23, pp. 3800.

  23. Barrish D.; Kroon S.; van der Merwe B., Making Superhuman AI More Human in Chess, Lecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics) 14528 LNCS, pp. 3.

  24. Basel A.M.; Simaika J.P.; Samways M.J.; Midgley G.F.; Latombe G.; MacFadyen S.; Hui C., Drivers of compositional turnover in narrow-ranged and widespread dragonflies and damselflies in Africa, Insect Conservation and Diversity 17 (3), pp. 501.

  25. Beetar C.; Gupta N.; Haque S.S.; Murugan J.; Van Zyl H.J.R., Complexity and operator growth for quantum systems in dynamic equilibrium, Journal of High Energy Physics 2024 (8), art. no. 156.

  26. Berglund M.; Martens W.; van der Merwe B., Constructing a BPE Tokenization DFA, Lecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics) 15015 LNCS, pp. 66.

  27. Berglund P.; He Y.-H.; Heyes E.; Hirst E.; Jejjala V.; Lukas A., New Calabi–Yau manifolds from genetic algorithms, Physics Letters, Section B: Nuclear, Elementary Particle and High-Energy Physics 850, art. no. 138504.

  28. Bhattacharyya A.; Brahma S.; Haque S.; Lund J.S.; Paul A., The early universe as an open quantum system: complexity and decoherence, Journal of High Energy Physics 2024 (5), art. no. 58.

  29. Bian N.H.; Strauss R.D.; Li G.; Engelbrecht N.E., Heliospheric Diffusion of Stochastic Parker Spirals in Radially Evolving Solar Wind Turbulence, Astrophysical Journal 962 (2), art. no. 186.

  30. BLECHER A.; KNOPFMACHER A.; PRODINGER H., Left-to-right maxima in Dyck bridges and walks, Bulletin of the Institute of Combinatorics and its Applications 100, pp. 123.

  31. Botha J.L.; van Heerden B.; Krüger T.P.J., Advanced analysis of single-molecule spectroscopic data, Biophysical Reports 4 (3), art. no. 100173.

  32. Boungou C.C.; Ngantso G.D.; Malonda-Boungou B.R.; Raji A.T.; Moussounda P.S., DFT calculations with and without spin polarization of the adsorption and decomposition of NCO and OCN on the Ag(110) surface, Computational Condensed Matter 41, art. no. e00975.

  33. Boungou S.E.; Malonga Matanou C.L.; Malonda-Boungou B.R.; Raji A.T.; Moussounda P.S., Molecular dissociation of nitric oxide (NO) on VO2(010) surface : A DFT study including vdW forces, Computational and Theoretical Chemistry 1239, art. no. 114786.

  34. Bourn D.; Hoefnagel M., On n-unital and n-Mal’tsev categories, Applied Categorical Structures 32 (6), art. no. 32.

  35. Brand D.; Petruccione F., A quantum leaky integrate-and-fire spiking neuron and network, npj Quantum Information 10 (1), art. no. 125.

  36. Brand D.; Sinayskiy I.; Petruccione F., Markovian noise modelling and parameter extraction framework for quantum devices, Scientific Reports 14 (1), art. no. 4769.

  37. Butbaia G.; Peña D.M.; Tan J.; Berglund P.; Hübsch T.; Jejjala V.; Mishra C., Physical Yukawa couplings in heterotic string compactifications, Advances in Theoretical and Mathematical Physics 28 (8), pp. 2783.

  38. Carranza M.M.; Long M.C.; Di Luca A.; Fassbender A.J.; Johnson K.S.; Takeshita Y.; Mongue P.; Turner K.E., Extratropical storms induce carbon outgassing over the Southern Ocean, npj Climate and Atmospheric Science 7 (1), art. no. 106.

  39. Carranza M.M.; Long M.C.; Di Luca A.; Fassbender A.J.; Johnson K.S.; Takeshita Y.; Mongwe P.; Turner K.E., Correction to: Extratropical storms induce carbon outgassing over the Southern Ocean (npj Climate and Atmospheric Science, (2024), 7, 1, (106), 10.1038/s41612-024-00657-7), npj Climate and Atmospheric Science 7 (1), art. no. 135.

  40. Chakraborty S.; Dunsby P.K.S.; Goswami R.; Abebe A., A dynamical systems formulation for inhomogeneous LRS-II spacetimes, Journal of Cosmology and Astroparticle Physics 2024, art. no. 054.

  41. Ciardi M.; Cinti F.; Pellicane G.; Prestipino S., Supersolid Phases of Bosonic Particles in a Bubble Trap, Physical Review Letters 132 (2), art. no. 026001.

  42. Conradie W.; De Domenico A.; Manoorkar K.; Palmigiano A.; Panettiere M.; Pinto Prieto D.; Tzimoulis A., Modal reduction principles across relational semantics, Fuzzy Sets and Systems 481, art. no. 108892.

  43. Conradie W.; Manoorkar K.; Palmigiano A.; Panettiere M., Modal reduction principles: a parametric shift to graphs, Journal of Applied Non-Classical Logics 34 (2-3), pp. 174.

  44. Craig A.; Haviar M.; Marais K., Dual digraphs of finite meet-distributive and modular lattices, Cubo 26 (2), pp. 279.

  45. Cupellini L.; Gwizdala M.; Krüger T.P.J., Energetic Landscape and Terminal Emitters of Phycobilisome Cores from Quantum Chemical Modeling, Journal of Physical Chemistry Letters, pp. 9746.

  46. Damena T.; Desalegn T.; Mathura S.; Getahun A.; Bizuayehu D.; Alem M.B.; Gadisa S.; Zeleke D.; Demissie T.B., Synthesis, Structural Characterization, and Computational Studies of Novel Co(II) and Zn(II) Fluoroquinoline Complexes for Antibacterial and Antioxidant Activities ACS Omega.

  47. Das S.; Haque S.S.; Tema S., Cosmological singularity and power-law solutions in modified gravity, Annals of Physics 470, art. no. 169829.

  48. Das S.; Razzaque S., Cosmic-ray origin of 10 TeV gamma-rays in GRB 221009A, Proceedings of Science 444, art. no. 668.

  49. David I.J.; Sinayskiy I.; Petruccione F., Digital simulation of convex mixtures of Markovian and non-Markovian single qubit Pauli channels on NISQ devices, EPJ Quantum Technology 11 (1), art. no. 14.

  50. Dayaram K.; Goswami A.; Janelidze Z., Isbell’s subfactor projections in a noetherian form, Advanced Studies: Euro-Tbilisi Mathematical Journal 17 (3), pp. 63.

  51. de Mello Koch R.; Kemp G.; Van Zyl H.J.R., Bilocal holography and locality in the bulk, Journal of High Energy Physics 2024 (4), art. no. 79.

  52. de Mello Koch R.; Roy P.; Van Zyl H.J.R., Massive fields in AdS from constructive holography, Journal of High Energy Physics 2024 (9), art. no. 195.

  53. de Mello Koch R.; Roy P.; Van Zyl H.J.R., Holography of a single free matrix, Journal of High Energy Physics 2024 (6), art. no. 81.

  54. de Mello Koch R.; Roy P.; Van Zyl H.J.R., Reconstructing the spacetime dual to a free matrix, Journal of High Energy Physics 2024 (7), art. no. 86.

  55. de Mello Koch R.; Van Zyl H.J.R., Constructive holography, Journal of High Energy Physics 2024 (9), art. no. 22.

  56. Desta E.T.; Strauss R.D.; Engelbrecht N.E., Modeling of the Polytropic Index and Temperature Anisotropy in the Solar Wind, Astrophysical Journal 966 (1), art. no. 142.

  57. Dhindsa N.S.; Jha R.G.; Joseph A.; Schaich D., Nonperturbative phase diagram of two-dimensional N= (2, 2) super-Yang-Mills theory, Physical Review D 110 (5), art. no. 054507.

  58. Dhindsa N.S.; Joseph A.; Samlodia A.; Schaich D., Deconfinement Phase Transition in Bosonic BMN Model at General Coupling, Springer Proceedings in Physics 304 SPPHY, pp. 1020.

  59. Dixit K.; Haque S.S.; Razzaque S., Quantum spread complexity in neutrino oscillations European Physical Journal C 84 (3), art. no. 260.

  60. Dlamini S.; Jolicoeur S.; Maartens R., Constraining the growth rate on linear scales by combining SKAO and DESI surveys, European Physical Journal C 84 (1), art. no. 95.

  61. Dongho-Nguimdo G.M.; Igumbor E.; Benecha E.M.; Raji A.T.; Lombardi E.B., Exploring defect engineering in monolayer TiS3 for next-generation electronic devices: Insights from first-principles study, Computational Condensed Matter, 40, art. no. e00947.

  62. Du Plessis L.; Venter C.; Harding A.K.; Wadiasingh Z.; Kalapotharakos C.; Els P., Towards modelling AR Sco: generalized particle dynamics and strong radiation-reaction regimes, Monthly Notices of the Royal Astronomical Society 532 (4), pp. 4408.

  63. du Toit H.A.; Schutte W.D.; Raubenheimer H., Integrating traditional and non-traditional model risk frameworks in credit scoring, South African Journal of Economic and Management Sciences 27 (1), art. no. a5786.

  64. Els P.L.; Engelbrecht N.E., On Calculating Diffusion Coefficients Numerically in Synthetic Turbulence Using Particle Pushers, Astrophysical Journal 969 (1), art. no. 51.

  65. Els P.L.; Engelbrecht N.E.; Lang J.T.; Strauss R.D., The Diffusion Tensor of Protons at 1 au: Comparing Simulation, Observation, and Theory, Astrophysical Journal, 975 (1), art. no. 134.

  66. Fazel-Rastgar F.; Khansalari S.; Sivakumar V., A Case Study of Extreme Temperature with Air Pollution and Health Risk in Yazd Province during July 2019, Pollution 10 (1), pp. 550.

  67. Fazel-Rastgar F.; Sivakumar V., A case study on more recent heat wave occurred in South Africa, based on background weather synoptic and dynamic characteristics analysis, Bulletin of Atmospheric Science and Technology 5 (1), art. no. 5.

  68. Fošner A.; Hardy Y.; Zinsou B., Block determinants, partial determinants and the exponential map, Linear and Multilinear Algebra 72 (17), pp. 2879.

  69. Foster J.; O'Connor T.; Visser V.; Hoffman T., Persistence of the African baobab (Adansonia digitata L.) in a system experiencing chronic utilization by elephants, Conservation Science and Practice 6 (7), art. no. e13151.

  70. Galván I.; Hassasfar A.; Adams B.; Petruccione F., Isotope effects on radical pair performance in cryptochrome: A new hypothesis for the evolution of animal migration: The quantum biology of migration, BioEssays 46 (1), art. no. 2300152.

  71. Gibbs R.; Landi P.; Hui C., Heterogeneity in the resource landscape encourages increased cognitive and perceptive capabilities in foragers, Ecological Modelling 492, art. no. 110693.

  72. Goswami A. Terminal Spaces of Monoids, Communications of the Korean Mathematical Society 39 (1), pp. 259.

  73. Goswami A., Lower spaces of multiplicative lattices, Bollettino dell'Unione Matematica Italiana.

  74. Goswami A., On z-ideals and z-closure operations of semirings, I, Quaestiones Mathematicae.

  75. Goswami A., k-spaces of non-domain-valued geometric points, Applied General Topology 25 (2), pp. 375.

  76. Goswami A.; Dube T., Some aspects of k-ideals of semirings, Rendiconti del Circolo Matematico di Palermo 73 (8), art. no. 1250195, pp. 3105.

  77. Guehaz R.; Sivakumar V.; Mbatha N., A case study on the dust storm that occurred on March 13–18, 2022, over the Algerian Sahara, using satellite remote sensing, Journal of Atmospheric and Solar-Terrestrial Physics 264, art. no. 106345.

  78. Haque S.S.; Jafari G.; Underwood B., Universal early-time growth in quantum circuit complexity, Journal of High Energy Physics 2024 (10), art. no. 101.

  79. Haque S.S.; Murugan J.; Tladi M.; Van Zyl H.J.R., Krylov complexity for Jacobi coherent states, Journal of High Energy Physics 2024 (5), art. no. 220.

  80. Hoefnagel M.; Jacqmin P.-A., Partial Algebras and Implications of (Weak) Matrix Properties, Applied Categorical Structures 32 (6), art. no. 34.

  81. Hoefnagel M.; Jacqmin P.-A.; Janelidze Z.; van der Walt E., On binary matrix properties, Quaestiones Mathematicae 47 (2), pp. 285.

  82. Hoefnagel M.; Rodelo D., Categorical Aspects of Congruence Distributivity, Theory and Applications of Categories 41, pp. 531.

  83. Hough R.T.; Shao Z.; Cui W.; Loubser S.I.; Babul A.; Davé R.; Rennehan D.; Kobayashi C., Simba-C: the evolution of the thermal and chemical properties in the intragroup medium, Monthly Notices of the Royal Astronomical Society 532 (1), pp. 476.

  84. Howell K.-T.; Neudauer N.A., On independence in near-vector spaces and their matroids, Linear Algebra and Its Applications 693, pp. 339.

  85. Hui C.; MacFadyen S.; Visser V.; Groom Q.; Isaac N.J.B., Editorial: Biodiversity informatics: building a lifeboat for high functionality data to decision pipeline, Frontiers in Ecology and Evolution 12, art. no. 1386917.

  86. Hurter H.; Venter C.; Levin L.; Stappers B.W.; Barr E.D.; Breton R.P.; Buchner S.; Carli E.; Kramer M.; Padmanabh P.V.; Possenti A.; Prayag V.; Turner J.D., Searching for pulsars, magnetars, and fast radio bursts in the sculptor galaxy using MeerKAT, Monthly Notices of the Royal Astronomical Society 533 (4), pp. 4268.

  87. Ibitoye A.; Dai W.-M.; Ma Y.-Z.; Vielva P.; Tramonte D.; Abebe A.; Beesham A.; Chen X., Cross Correlation between the Thermal Sunyaev-Zeldovich Effect and the Integrated Sachs-Wolfe Effect, Astrophysical Journal, Supplement Series 270 (1), art. no. 16.

  88. Igumbor E.; Dongho-Nguimdo M.; Mapasha E.; Kalimuthu R.; Raji A.; Meyer W., Trivalent Atom Defect-Complex Induced Defect Levels in Germanium for Enhanced GeBased Device Performance, Journal of Electronic Materials 53 (4), pp. 1903.

  89. Izuchukwu C.; Ogwo G.N.; Zinsou B., A new inertial condition on the subgradient extragradient method for solving pseudomonotone equilibrium problem, Communications in Nonlinear Science and Numerical Simulation 135, art. no. 108076.

  90. Kala S.; Nandan H.; Abebe A.; Roy S., Gravitational lensing around a dual-charged stringy black hole in plasma background, European Physical Journal C 84 (10), art. no. 1089.

  91. Kalauch A.; Kuo W.; Watson B.A., Strong Completeness Of A Class Of L2(T)-Type Riesz Spaces, Proceedings of the American Mathematical Society, Series B 11, pp. 243.

  92. Karabo K.; Sekga C.; Kissack C.; Mafu M.; Petruccione F., A novel quantum key distribution resistant against large-pulse attacks, IET Quantum Communication 5 (3), pp. 282.

  93. Karagiannis D.; Maartens R.; Fonseca J.; Camera S.; Clarkson C., Multi-tracer power spectra and bispectra: formalism, Journal of Cosmology and Astroparticle Physics 2024 (3), art. no. 034.

  94. Kopana M.; Jolicoeur S.; Maartens R., Multi-tracing the primordial Universe with future surveys, European Physical Journal C 84 (5), art. no. 491.

  95. Kothari R.; Maartens R., A wide-angle formulation of foreground filters for HI intensity mapping, Journal of Cosmology and Astroparticle Physics 2024 (5), art. no. 089.

  96. Kubyana M.S.; Landi P.; Hui C., Adaptive rock-paper-scissors game enhances eco-evolutionary performance at cost of dynamic stability, Applied Mathematics and Computation 468, art. no. 128535.

  97. Kumar A.; Joseph A.; Kumar P., Investigating Spontaneous SO(10) Symmetry Breaking in Type IIB Matrix Model, Springer Proceedings in Physics 304 SPPHY, pp. 1201.

  98. Kundu A.; Joshi J.C.; Venter C.; Engelbrecht N.E.; Zhang W.; Torres D.F.; Sushch I.; Tanaka S.J., Spatio-spectral-temporal modelling of two young pulsar wind nebulae, Monthly Notices of the Royal Astronomical Society 535 (3) , pp. 2415.

  99. Kyakutwika N.; Bartlett B., Bayesian forecasting of stock returns on the JSE using simultaneous graphical dynamic linear models*, Investment Analysts Journal.

  100. Lang J.T.; Strauss R.D.; Engelbrecht N.E.; van den Berg J.P.; Dresing N.; Ruffolo D.; Bandyopadhyay R., A Detailed Survey of the Parallel Mean Free Path of Solar Energetic Particle Protons and Electrons, Astrophysical Journal 971 (1), art. no. 105.

  101. Lau P.H.C.; Ma C.-T.; Murugan J.; Tezuka M., On the backreaction of Dirac matter in JT gravity and SYK model, Physics Letters, Section B: Nuclear, Elementary Particle and High-Energy Physics 853, art. no. 138702.

  102. Lautenbacher L.; Jagadish V.; Petruccione F.; Bernardes N.K., Petz recovery maps for qudit quantum channels, Physics Letters, Section A: General, Atomic and Solid State Physics 512, art. no. 129583.

  103. le Roux V.; Davel M.H.; Bosman J., Parsimonious airfoil Parameterisation: A deep learning framework with Bidirectional LSTM and Gaussian Mixture models, Expert Systems with Applications 255, art. no. 124726.

  104. Lei Y.; van Leuven S., Modularity in d > 2 free conformal field theory, Journal of High Energy Physics 2024 (11), art. no. 23.

  105. Li G.; Ma Y.-Z.; Tramonte D.; Li G.-L. Cross-correlation of cosmic voids with thermal Sunyaev-Zel'dovich data, Monthly Notices of the Royal Astronomical Society 527 (2), pp. 2663.

  106. Longia V.; Joseph A.; Samlodia A., Investigating the Two-Dimensional Generalized XY Model Using Tensor Networks, Springer Proceedings in Physics 304 SPPHY, pp. 362.

  107. Loubser S.I.; Mosia K.; Serra P.; Kleiner D.; Peletier R.F.; Kraan-Korteweg R.C.; Iodice E.; Loni A.; Kamphuis P.; Zabel N., The star formation histories of galaxies in different stages of pre-processing in the Fornax A group, Monthly Notices of the Royal Astronomical Society 527 (3), pp. 7158.

  108. Mahoungou-Nguimbi F.B.; Mouketo L.; Malonda-Boungou B.R.; Raji A.T.; M'Passi-Mabiala B., Ni thin-films on Pd surfaces and effects of oxygen adsorption: Ab-initio study of structures, electronic properties, magnetic anisotropy, Surface Science 750, art. no. 122570.

  109. Maleka P.; Dima R.; Tshwane D.; Ntwaeaborwa O.; Maphanga R., Phase Separation of Br-Doped CsPbI3: A Combined Cluster Expansion, Monte Carlo, and DFT Study, Molecules 29 (1), art. no. 92.

  110. Maluleke T.; Benecke R.; Oladejo S.; Feulner G.; Kern S.; Lister J.; McClelland G.; Njoki M.; Noack P.; Petruccione F.; Rajaratnam K.; Waitt C.; Rosenkranz B.; Pillai G., Cross-disciplinary mathematical modelling to benefit healthcare – could clinical pharmacology play an enabling role?, British Journal of Clinical Pharmacology 90 (10), pp. 2509.

  111. Mathaba K.; Mulokwe M.; Rodrigues J.P., Large N master field optimization: the quantum mechanics of two Yang-Mills coupled matrices, Journal of High Energy Physics 2024 (2), art. no. 54.

  112. Mazwi L.; Razzaque S.; Nyadzani L., On non-detection of gamma-ray bursts in three compact binary merger events detected by LIGO, Monthly Notices of the Royal Astronomical Society 531 (1), pp. 2162.

  113. McFarthing S.; Pillay A.; Sinayskiy I.; Petruccione F., Classical ensembles of single-qubit quantum variational circuits for classification, Quantum Machine Intelligence 6 (2), art. no. 81.

  114. Miora R.H.D.; Senftleben M.; Abrahamsson S.; Rohwer E.; Heintzmann R.; Bosman G., Experimental validation of numerical point spread function calculation including aberration estimation, Optics Express 32 (12), pp. 21887.

  115. Mittal S.; Saharia A.; Ismail Y.; Petruccione F.; Bourdine A.V.; Morozov O.G.; Demidov V.V.; Yin J.; Singh G.; Tiwari M.; Kumar S., Design and Performance Analysis of a Novel Hoop-Cut SPR-PCF Sensor for High Sensitivity and Broad Range Sensing Applications, IEEE Sensors Journal 24 (3), pp. 2697.

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