Angelo Bassi

5.9k total citations · 1 hit paper
106 papers, 2.6k citations indexed

About

Angelo Bassi is a scholar working on Atomic and Molecular Physics, and Optics, Artificial Intelligence and Statistical and Nonlinear Physics. According to data from OpenAlex, Angelo Bassi has authored 106 papers receiving a total of 2.6k indexed citations (citations by other indexed papers that have themselves been cited), including 96 papers in Atomic and Molecular Physics, and Optics, 63 papers in Artificial Intelligence and 30 papers in Statistical and Nonlinear Physics. Recurrent topics in Angelo Bassi's work include Quantum Mechanics and Applications (83 papers), Quantum Information and Cryptography (60 papers) and Mechanical and Optical Resonators (25 papers). Angelo Bassi is often cited by papers focused on Quantum Mechanics and Applications (83 papers), Quantum Information and Cryptography (60 papers) and Mechanical and Optical Resonators (25 papers). Angelo Bassi collaborates with scholars based in Italy, United Kingdom and Germany. Angelo Bassi's co-authors include Hendrik Ulbricht, Kinjalk Lochan, Tejinder P. Singh, Seema Satin, Matteo Carlesso, Sandro Donadi, André Großardt, Stephen L. Adler, Luca Ferialdi and G. C. Ghirardi and has published in prestigious journals such as Nature, Science and Physical Review Letters.

In The Last Decade

Angelo Bassi

101 papers receiving 2.5k citations

Hit Papers

Models of wave-function collapse, underlying theories, an... 2013 2026 2017 2021 2013 200 400 600

Peers — A (Enhanced Table)

Peers by citation overlap · career bar shows stage (early→late) cites · hero ref

Name h Career Trend Papers Cites
Angelo Bassi Italy 26 2.3k 1.3k 722 327 280 106 2.6k
Lajos Diósi Hungary 29 3.4k 1.4× 2.3k 1.8× 1.4k 1.9× 413 1.3× 309 1.1× 107 3.7k
Fabio Benatti Italy 27 2.5k 1.1× 1.9k 1.5× 805 1.1× 171 0.5× 100 0.4× 137 3.0k
Nino Zanghı̀ Italy 29 2.2k 1.0× 882 0.7× 972 1.3× 194 0.6× 275 1.0× 66 2.4k
Joachim Kupsch Germany 10 1.7k 0.7× 1.0k 0.8× 646 0.9× 220 0.7× 140 0.5× 46 2.1k
Philip Pearle United States 22 2.4k 1.0× 1.3k 1.0× 842 1.2× 418 1.3× 469 1.7× 56 2.6k
Emilio Santos Spain 22 1.3k 0.5× 773 0.6× 458 0.6× 129 0.4× 111 0.4× 124 1.5k
Eric G. Cavalcanti Australia 24 2.8k 1.2× 2.4k 1.9× 329 0.5× 53 0.2× 83 0.3× 53 3.0k
Anton Zeilinger Austria 14 2.2k 1.0× 1.8k 1.4× 212 0.3× 66 0.2× 111 0.4× 24 2.5k
Yuji Hasegawa Japan 22 1.6k 0.7× 964 0.8× 247 0.3× 59 0.2× 133 0.5× 120 1.9k
Olga V. Man’ko Russia 24 1.7k 0.7× 1.3k 1.0× 556 0.8× 87 0.3× 47 0.2× 110 1.9k

Countries citing papers authored by Angelo Bassi

Since Specialization
Citations

This map shows the geographic impact of Angelo Bassi's research. It shows the number of citations coming from papers published by authors working in each country. You can also color the map by specialization and compare the number of citations received by Angelo Bassi with the expected number of citations based on a country's size and research output (numbers larger than one mean the country cites Angelo Bassi more than expected).

Fields of papers citing papers by Angelo Bassi

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by Angelo Bassi. Nodes represent research fields, and links connect fields that are likely to share authors. Colored nodes show fields that tend to cite the papers produced by Angelo Bassi. The network helps show where Angelo Bassi may publish in the future.

Co-authorship network of co-authors of Angelo Bassi

This figure shows the co-authorship network connecting the top 25 collaborators of Angelo Bassi. A scholar is included among the top collaborators of Angelo Bassi based on the total number of citations received by their joint publications. Widths of edges represent the number of papers authors have co-authored together. Node borders signify the number of papers an author published with Angelo Bassi. Angelo Bassi is excluded from the visualization to improve readability, since they are connected to all nodes in the network.

All Works

20 of 20 papers shown
1.
Bassi, Angelo, et al.. (2024). Simulating photonic devices with noisy optical elements. Physical Review Research. 6(3). 2 indexed citations
2.
Carlesso, Matteo, et al.. (2024). On the effectiveness of the collapse in the Diósi–Penrose model. New Journal of Physics. 26(11). 113004–113004. 3 indexed citations
3.
Donadi, Sandro, et al.. (2024). X-Ray Emission from Atomic Systems Can Distinguish between Prevailing Dynamical Wave-Function Collapse Models. Physical Review Letters. 132(25). 250203–250203. 2 indexed citations
4.
Bassi, Angelo, et al.. (2024). Efficient quantum algorithm to simulate open systems through a single environmental qubit. Physical Review Research. 6(4). 7 indexed citations
5.
Bassi, Angelo, et al.. (2023). On the testability of the Károlyházy model. New Journal of Physics. 26(1). 13001–13001.
6.
Bassi, Angelo, Mauro Dorato, & Hendrik Ulbricht. (2023). Collapse Models: A Theoretical, Experimental and Philosophical Review. Entropy. 25(4). 645–645. 15 indexed citations
7.
Carlesso, Matteo, Sandro Donadi, Luca Ferialdi, et al.. (2022). Present status and future challenges of non-interferometric tests of collapse models. Nature Physics. 18(3). 243–250. 56 indexed citations
8.
Bassi, Angelo, L. Cacciapuoti, Salvatore Capozzıello, et al.. (2022). A way forward for fundamental physics in space. npj Microgravity. 8(1). 49–49. 15 indexed citations
9.
Ferialdi, Luca, et al.. (2022). Possible limits on superconducting quantum computers from spontaneous wave-function collapse models. Physical review. B.. 106(17). 1 indexed citations
10.
Carlesso, Matteo, et al.. (2021). Gravity as a classical channel and its dissipative generalization. ArTS Archivio della ricerca di Trieste (University of Trieste https://www.units.it/). 6 indexed citations
11.
Carlesso, Matteo, et al.. (2021). Decoherence effects in non-classicality tests of gravity. New Journal of Physics. 23(4). 43040–43040. 49 indexed citations
12.
Bassi, Angelo, et al.. (2021). Gravitational decoherence: A general nonrelativistic model. Physical review. D. 103(10). 17 indexed citations
13.
Belenchia, Alessio, Matteo Carlesso, Sandro Donadi, et al.. (2021). Testing the foundation of quantum physics in space via Interferometric and non-interferometric experiments with mesoscopic nanoparticles. Communications Physics. 4(1). 35 indexed citations
14.
Bassi, Angelo, et al.. (2021). Gravitational Decoherence and the Possibility of Its Interferometric Detection. Physical Review Letters. 126(20). 200403–200403. 9 indexed citations
15.
Adler, Stephen L., Angelo Bassi, & Matteo Carlesso. (2021). The continuous spontaneous localization layering effect from a lattice perspective. Journal of Physics A Mathematical and Theoretical. 54(8). 85303–85303. 1 indexed citations
16.
Jones, C. R., et al.. (2021). Mass-coupled relativistic spontaneous collapse models. Journal of Physics A Mathematical and Theoretical. 54(29). 295306–295306. 10 indexed citations
17.
Adler, Stephen L., Angelo Bassi, & Luca Ferialdi. (2020). Minimum measurement time: lower bound on the frequency cutoff for collapse models. Journal of Physics A Mathematical and Theoretical. 53(21). 215302–215302. 2 indexed citations
18.
Bassi, Angelo, et al.. (2018). Quantum treatment of field propagation in a fiber near the zero dispersion wavelength. Journal of Optics. 20(5). 55402–55402. 8 indexed citations
19.
Bassi, Angelo, André Großardt, & Hendrik Ulbricht. (2017). Gravitational decoherence. Classical and Quantum Gravity. 34(19). 193002–193002. 124 indexed citations
20.
Bassi, Angelo, Emiliano Ippoliti, & Stephen L. Adler. (2004). Towards Quantum Superpositions of a Mirror: Stochastic Collapse Analysis. arXiv (Cornell University). 1 indexed citations

Rankless uses publication and citation data sourced from OpenAlex, an open and comprehensive bibliographic database. While OpenAlex provides broad and valuable coverage of the global research landscape, it—like all bibliographic datasets—has inherent limitations. These include incomplete records, variations in author disambiguation, differences in journal indexing, and delays in data updates. As a result, some metrics and network relationships displayed in Rankless may not fully capture the entirety of a scholar's output or impact.

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