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MARCASSA, Luís Gustavo. Cold Atom Molecule Interactions - CATMIN. . Granada: Universidad de Granada - UGR. Disponível em: https://repositorio.usp.br/directbitstream/ef9629aa-5b79-411f-a80a-585f778f2a27/PROD037170_3251966.pdf. Acesso em: 08 out. 2025. , 2025
APA
Marcassa, L. G. (2025). Cold Atom Molecule Interactions - CATMIN. Granada: Universidad de Granada - UGR. Recuperado de https://repositorio.usp.br/directbitstream/ef9629aa-5b79-411f-a80a-585f778f2a27/PROD037170_3251966.pdf
NLM
Marcassa LG. Cold Atom Molecule Interactions - CATMIN [Internet]. 2025 ;[citado 2025 out. 08 ] Available from: https://repositorio.usp.br/directbitstream/ef9629aa-5b79-411f-a80a-585f778f2a27/PROD037170_3251966.pdf
Vancouver
Marcassa LG. Cold Atom Molecule Interactions - CATMIN [Internet]. 2025 ;[citado 2025 out. 08 ] Available from: https://repositorio.usp.br/directbitstream/ef9629aa-5b79-411f-a80a-585f778f2a27/PROD037170_3251966.pdf
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SILVA, Luís Felipe Alves da e ROCHA, Leandro Manoel Rocha da e MOUSSA, Miled Hassan Youssef. Coherent deflection of atomic samples and positional mesoscopic superpositions. SciPost Physics, v. 18, n. 5, p. 169-1-169-14, 2025Tradução . . Disponível em: https://doi.org/10.21468/SciPostPhys.18.5.169. Acesso em: 08 out. 2025.
APA
Silva, L. F. A. da, Rocha, L. M. R. da, & Moussa, M. H. Y. (2025). Coherent deflection of atomic samples and positional mesoscopic superpositions. SciPost Physics, 18( 5), 169-1-169-14. doi:10.21468/SciPostPhys.18.5.169
NLM
Silva LFA da, Rocha LMR da, Moussa MHY. Coherent deflection of atomic samples and positional mesoscopic superpositions [Internet]. SciPost Physics. 2025 ; 18( 5): 169-1-169-14.[citado 2025 out. 08 ] Available from: https://doi.org/10.21468/SciPostPhys.18.5.169
Vancouver
Silva LFA da, Rocha LMR da, Moussa MHY. Coherent deflection of atomic samples and positional mesoscopic superpositions [Internet]. SciPost Physics. 2025 ; 18( 5): 169-1-169-14.[citado 2025 out. 08 ] Available from: https://doi.org/10.21468/SciPostPhys.18.5.169
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GOMES, Naomy Duarte et al. Microwave spectroscopy assisted by electromagnetically induced transparency near natural Förster resonance on rubidium. Results in Physics, v. 68, n. Ja 2025, p. 108081-1-108081-5, 2025Tradução . . Disponível em: https://doi.org/10.1016/j.rinp.2024.108081. Acesso em: 08 out. 2025.
APA
Gomes, N. D., Magalhães, D. V., Kondo, J. D. M., & Marcassa, L. G. (2025). Microwave spectroscopy assisted by electromagnetically induced transparency near natural Förster resonance on rubidium. Results in Physics, 68( Ja 2025), 108081-1-108081-5. doi:10.1016/j.rinp.2024.108081
NLM
Gomes ND, Magalhães DV, Kondo JDM, Marcassa LG. Microwave spectroscopy assisted by electromagnetically induced transparency near natural Förster resonance on rubidium [Internet]. Results in Physics. 2025 ; 68( Ja 2025): 108081-1-108081-5.[citado 2025 out. 08 ] Available from: https://doi.org/10.1016/j.rinp.2024.108081
Vancouver
Gomes ND, Magalhães DV, Kondo JDM, Marcassa LG. Microwave spectroscopy assisted by electromagnetically induced transparency near natural Förster resonance on rubidium [Internet]. Results in Physics. 2025 ; 68( Ja 2025): 108081-1-108081-5.[citado 2025 out. 08 ] Available from: https://doi.org/10.1016/j.rinp.2024.108081
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TORRES, Manuel Alejandro Lefrán e KONDO, Jorge Douglas Massayuki e MARCASSA, Luís Gustavo. Phase transition observed by transmission spectroscopy in cold Rydberg atoms. 2025, Anais.. Granada: Universidad de Granada - UGR, 2025. Disponível em: https://eventos.ugr.es/catmin/program/. Acesso em: 08 out. 2025.
APA
Torres, M. A. L., Kondo, J. D. M., & Marcassa, L. G. (2025). Phase transition observed by transmission spectroscopy in cold Rydberg atoms. In Abstract book. Granada: Universidad de Granada - UGR. Recuperado de https://eventos.ugr.es/catmin/program/
NLM
Torres MAL, Kondo JDM, Marcassa LG. Phase transition observed by transmission spectroscopy in cold Rydberg atoms [Internet]. Abstract book. 2025 ;[citado 2025 out. 08 ] Available from: https://eventos.ugr.es/catmin/program/
Vancouver
Torres MAL, Kondo JDM, Marcassa LG. Phase transition observed by transmission spectroscopy in cold Rydberg atoms [Internet]. Abstract book. 2025 ;[citado 2025 out. 08 ] Available from: https://eventos.ugr.es/catmin/program/
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ALVES JÚNIOR, Eliel Leandro et al. Comparison of different Rydberg atom-based microwave electrometry techniques. Atoms, v. 13, n. 7, p. 59-1-59-9, 2025Tradução . . Disponível em: https://doi.org/10.3390/atoms13070059. Acesso em: 08 out. 2025.
APA
Alves Júnior, E. L., Torres, M. A. L., Kondo, J. D. M., & Marcassa, L. G. (2025). Comparison of different Rydberg atom-based microwave electrometry techniques. Atoms, 13( 7), 59-1-59-9. doi:10.3390/atoms13070059
NLM
Alves Júnior EL, Torres MAL, Kondo JDM, Marcassa LG. Comparison of different Rydberg atom-based microwave electrometry techniques [Internet]. Atoms. 2025 ; 13( 7): 59-1-59-9.[citado 2025 out. 08 ] Available from: https://doi.org/10.3390/atoms13070059
Vancouver
Alves Júnior EL, Torres MAL, Kondo JDM, Marcassa LG. Comparison of different Rydberg atom-based microwave electrometry techniques [Internet]. Atoms. 2025 ; 13( 7): 59-1-59-9.[citado 2025 out. 08 ] Available from: https://doi.org/10.3390/atoms13070059
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AVS Quantum Science. . Melville: American Institute of Physics - AIP. Disponível em: https://repositorio.usp.br/directbitstream/7ef7c736-61ee-4eb9-bfe3-3aa3e4935ff8/3252175.pdf. Acesso em: 08 out. 2025. , 2025
APA
AVS Quantum Science. (2025). AVS Quantum Science. Melville: American Institute of Physics - AIP. Recuperado de https://repositorio.usp.br/directbitstream/7ef7c736-61ee-4eb9-bfe3-3aa3e4935ff8/3252175.pdf
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Journal of Physics B: atomic, molecular and optical physics. . Bristol: Institute of Physics - IOP. Disponível em: https://repositorio.usp.br/directbitstream/9bfc275a-39c9-48c3-b76f-a1f56fbd788e/3255644.pdf. Acesso em: 08 out. 2025. , 2025
APA
Journal of Physics B: atomic, molecular and optical physics. (2025). Journal of Physics B: atomic, molecular and optical physics. Bristol: Institute of Physics - IOP. Recuperado de https://repositorio.usp.br/directbitstream/9bfc275a-39c9-48c3-b76f-a1f56fbd788e/3255644.pdf
NLM
Journal of Physics B: atomic, molecular and optical physics [Internet]. 2025 ;[citado 2025 out. 08 ] Available from: https://repositorio.usp.br/directbitstream/9bfc275a-39c9-48c3-b76f-a1f56fbd788e/3255644.pdf
Vancouver
Journal of Physics B: atomic, molecular and optical physics [Internet]. 2025 ;[citado 2025 out. 08 ] Available from: https://repositorio.usp.br/directbitstream/9bfc275a-39c9-48c3-b76f-a1f56fbd788e/3255644.pdf
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RAMIREZ, Enrique Hernandez et al. Symmetry breaking and non-ergodicity in a driven-dissipative ensemble of multilevel atoms in a cavity. Physical Review Research, v. 6, n. 3, p. L032072-1-L032072-6, 2024Tradução . . Disponível em: https://doi.org/10.1103/PhysRevResearch.6.L032072. Acesso em: 08 out. 2025.
APA
Ramirez, E. H., Suarez, E., Lesanovsky, I., Sanchez, B. O., Courteille, P. W., & Slama, S. (2024). Symmetry breaking and non-ergodicity in a driven-dissipative ensemble of multilevel atoms in a cavity. Physical Review Research, 6( 3), L032072-1-L032072-6. doi:10.1103/PhysRevResearch.6.L032072
NLM
Ramirez EH, Suarez E, Lesanovsky I, Sanchez BO, Courteille PW, Slama S. Symmetry breaking and non-ergodicity in a driven-dissipative ensemble of multilevel atoms in a cavity [Internet]. Physical Review Research. 2024 ; 6( 3): L032072-1-L032072-6.[citado 2025 out. 08 ] Available from: https://doi.org/10.1103/PhysRevResearch.6.L032072
Vancouver
Ramirez EH, Suarez E, Lesanovsky I, Sanchez BO, Courteille PW, Slama S. Symmetry breaking and non-ergodicity in a driven-dissipative ensemble of multilevel atoms in a cavity [Internet]. Physical Review Research. 2024 ; 6( 3): L032072-1-L032072-6.[citado 2025 out. 08 ] Available from: https://doi.org/10.1103/PhysRevResearch.6.L032072
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GOMES, Naomy Duarte et al. Rydberg atom-based microwave electrometry using polarization spectroscopy. Journal of Physics B, v. No 2024, n. 23, p. 235502-1-235502-12, 2024Tradução . . Disponível em: https://doi.org/10.1088/1361-6455/ad8a34. Acesso em: 08 out. 2025.
APA
Gomes, N. D., Pepino, V. M., Borges, B. -H. V., Magalhães, D. V., Napolitano, R. de J., Torres, M. A. L., et al. (2024). Rydberg atom-based microwave electrometry using polarization spectroscopy. Journal of Physics B, No 2024( 23), 235502-1-235502-12. doi:10.1088/1361-6455/ad8a34
NLM
Gomes ND, Pepino VM, Borges B-HV, Magalhães DV, Napolitano R de J, Torres MAL, Kondo JDM, Marcassa LG. Rydberg atom-based microwave electrometry using polarization spectroscopy [Internet]. Journal of Physics B. 2024 ; No 2024( 23): 235502-1-235502-12.[citado 2025 out. 08 ] Available from: https://doi.org/10.1088/1361-6455/ad8a34
Vancouver
Gomes ND, Pepino VM, Borges B-HV, Magalhães DV, Napolitano R de J, Torres MAL, Kondo JDM, Marcassa LG. Rydberg atom-based microwave electrometry using polarization spectroscopy [Internet]. Journal of Physics B. 2024 ; No 2024( 23): 235502-1-235502-12.[citado 2025 out. 08 ] Available from: https://doi.org/10.1088/1361-6455/ad8a34
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MACHADO, Leandro Alvares et al. Excitation of bose-einstein condensates through the separate fields technique. 2024, Anais.. Bristol: Institute of Physics - IOP, 2024. Disponível em: https://www.lasphys.com/workshops/abstracts/files/2024/d3/79/39/957e9f04b821c9024e3857adcf/abstract.pdf. Acesso em: 08 out. 2025.
APA
Machado, L. A., Madeira, L., Caracanhas, M. A., & Bagnato, V. S. (2024). Excitation of bose-einstein condensates through the separate fields technique. In Program. Bristol: Institute of Physics - IOP. Recuperado de https://www.lasphys.com/workshops/abstracts/files/2024/d3/79/39/957e9f04b821c9024e3857adcf/abstract.pdf
NLM
Machado LA, Madeira L, Caracanhas MA, Bagnato VS. Excitation of bose-einstein condensates through the separate fields technique [Internet]. Program. 2024 ;[citado 2025 out. 08 ] Available from: https://www.lasphys.com/workshops/abstracts/files/2024/d3/79/39/957e9f04b821c9024e3857adcf/abstract.pdf
Vancouver
Machado LA, Madeira L, Caracanhas MA, Bagnato VS. Excitation of bose-einstein condensates through the separate fields technique [Internet]. Program. 2024 ;[citado 2025 out. 08 ] Available from: https://www.lasphys.com/workshops/abstracts/files/2024/d3/79/39/957e9f04b821c9024e3857adcf/abstract.pdf
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CIPRIS, Ana et al. Transmission of light in dense cold atomic clouds. 2024, Anais.. Bristol: Institute of Physics - IOP, 2024. Disponível em: https://www.lasphys.com/workshops/abstracts/files/2024/f7/e7/35/95c894d89f3e998d5e2d91112e/abstract.pdf. Acesso em: 08 out. 2025.
APA
Cipris, A., Dias, P. G. S., Fernandez, M. F., Martins, M. do A., Courteille, P. W., & Teixeira, R. C. (2024). Transmission of light in dense cold atomic clouds. In Program. Bristol: Institute of Physics - IOP. Recuperado de https://www.lasphys.com/workshops/abstracts/files/2024/f7/e7/35/95c894d89f3e998d5e2d91112e/abstract.pdf
NLM
Cipris A, Dias PGS, Fernandez MF, Martins M do A, Courteille PW, Teixeira RC. Transmission of light in dense cold atomic clouds [Internet]. Program. 2024 ;[citado 2025 out. 08 ] Available from: https://www.lasphys.com/workshops/abstracts/files/2024/f7/e7/35/95c894d89f3e998d5e2d91112e/abstract.pdf
Vancouver
Cipris A, Dias PGS, Fernandez MF, Martins M do A, Courteille PW, Teixeira RC. Transmission of light in dense cold atomic clouds [Internet]. Program. 2024 ;[citado 2025 out. 08 ] Available from: https://www.lasphys.com/workshops/abstracts/files/2024/f7/e7/35/95c894d89f3e998d5e2d91112e/abstract.pdf
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BIRAL, Elias José Portes et al. Bose-Einstein condensates and the thin-shell limit in anisotropic bubble traps. New Journal of Physics, v. 26, n. Ja 2024, p. 013035-1-013035-17, 2024Tradução . . Disponível em: https://doi.org/10.1088/1367-2630/ad1a29. Acesso em: 08 out. 2025.
APA
Biral, E. J. P., Móller, N. S., Pelster, A., & Santos, F. E. A. dos. (2024). Bose-Einstein condensates and the thin-shell limit in anisotropic bubble traps. New Journal of Physics, 26( Ja 2024), 013035-1-013035-17. doi:10.1088/1367-2630/ad1a29
NLM
Biral EJP, Móller NS, Pelster A, Santos FEA dos. Bose-Einstein condensates and the thin-shell limit in anisotropic bubble traps [Internet]. New Journal of Physics. 2024 ; 26( Ja 2024): 013035-1-013035-17.[citado 2025 out. 08 ] Available from: https://doi.org/10.1088/1367-2630/ad1a29
Vancouver
Biral EJP, Móller NS, Pelster A, Santos FEA dos. Bose-Einstein condensates and the thin-shell limit in anisotropic bubble traps [Internet]. New Journal of Physics. 2024 ; 26( Ja 2024): 013035-1-013035-17.[citado 2025 out. 08 ] Available from: https://doi.org/10.1088/1367-2630/ad1a29
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CUNHA, Pedro Henrique Cook e CASTILHO, Patricia Christina Marques. Arbitrary light beam shapping for ultracold atom experiments. 2024, Anais.. Bristol: Institute of Physics - IOP, 2024. Disponível em: https://www.lasphys.com/workshops/abstracts/files/2024/2b/56/d9/6bcbdd4165820e42a01ece7219/abstract.pdf. Acesso em: 08 out. 2025.
APA
Cunha, P. H. C., & Castilho, P. C. M. (2024). Arbitrary light beam shapping for ultracold atom experiments. In Program. Bristol: Institute of Physics - IOP. Recuperado de https://www.lasphys.com/workshops/abstracts/files/2024/2b/56/d9/6bcbdd4165820e42a01ece7219/abstract.pdf
NLM
Cunha PHC, Castilho PCM. Arbitrary light beam shapping for ultracold atom experiments [Internet]. Program. 2024 ;[citado 2025 out. 08 ] Available from: https://www.lasphys.com/workshops/abstracts/files/2024/2b/56/d9/6bcbdd4165820e42a01ece7219/abstract.pdf
Vancouver
Cunha PHC, Castilho PCM. Arbitrary light beam shapping for ultracold atom experiments [Internet]. Program. 2024 ;[citado 2025 out. 08 ] Available from: https://www.lasphys.com/workshops/abstracts/files/2024/2b/56/d9/6bcbdd4165820e42a01ece7219/abstract.pdf
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BAGNATO, Vanderlei Salvador. Time evolution of a far-from-equilibrium BEC: turbulence, scalability, reversing cascade, and thermalization. 2024, Anais.. Prague: Czech Academy of Sciences - CAS, 2024. Disponível em: https://fqmt.fzu.cz/24/printables/AbsbookFQMT24.pdf. Acesso em: 08 out. 2025.
APA
Bagnato, V. S. (2024). Time evolution of a far-from-equilibrium BEC: turbulence, scalability, reversing cascade, and thermalization. In Abstract Book. Prague: Czech Academy of Sciences - CAS. Recuperado de https://fqmt.fzu.cz/24/printables/AbsbookFQMT24.pdf
NLM
Bagnato VS. Time evolution of a far-from-equilibrium BEC: turbulence, scalability, reversing cascade, and thermalization [Internet]. Abstract Book. 2024 ;[citado 2025 out. 08 ] Available from: https://fqmt.fzu.cz/24/printables/AbsbookFQMT24.pdf
Vancouver
Bagnato VS. Time evolution of a far-from-equilibrium BEC: turbulence, scalability, reversing cascade, and thermalization [Internet]. Abstract Book. 2024 ;[citado 2025 out. 08 ] Available from: https://fqmt.fzu.cz/24/printables/AbsbookFQMT24.pdf
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MAGNANI, Pedro Henrique Nantes et al. Breaking of reciprocity and the Pancharatnam-Berry phase for light scattered by a disordered cold-atom cloud. Physical Review A, v. 110, n. 4, p. L041302-1-L041302-6 + supplementary material, 2024Tradução . . Disponível em: https://doi.org/10.1103/PhysRevA.110.L041302. Acesso em: 08 out. 2025.
APA
Magnani, P. H. N., Dias, P. G. S., Fernandez, M. F., Martins, M. do A., Piovella, N. U. C., Kaiser, R., et al. (2024). Breaking of reciprocity and the Pancharatnam-Berry phase for light scattered by a disordered cold-atom cloud. Physical Review A, 110( 4), L041302-1-L041302-6 + supplementary material. doi:10.1103/PhysRevA.110.L041302
NLM
Magnani PHN, Dias PGS, Fernandez MF, Martins M do A, Piovella NUC, Kaiser R, Courteille PW, Hugbart M, Bachelard RPM, Teixeira RC. Breaking of reciprocity and the Pancharatnam-Berry phase for light scattered by a disordered cold-atom cloud [Internet]. Physical Review A. 2024 ; 110( 4): L041302-1-L041302-6 + supplementary material.[citado 2025 out. 08 ] Available from: https://doi.org/10.1103/PhysRevA.110.L041302
Vancouver
Magnani PHN, Dias PGS, Fernandez MF, Martins M do A, Piovella NUC, Kaiser R, Courteille PW, Hugbart M, Bachelard RPM, Teixeira RC. Breaking of reciprocity and the Pancharatnam-Berry phase for light scattered by a disordered cold-atom cloud [Internet]. Physical Review A. 2024 ; 110( 4): L041302-1-L041302-6 + supplementary material.[citado 2025 out. 08 ] Available from: https://doi.org/10.1103/PhysRevA.110.L041302
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ARAÚJO, Michelle Oliveira de et al. Cooperative atomic emission from a line of atoms interacting with a resonant plane surface. Physical Review A, v. 110, n. 3, p. 032813-1-032813-9, 2024Tradução . . Disponível em: https://doi.org/10.1103/PhysRevA.110.032813. Acesso em: 08 out. 2025.
APA
Araújo, M. O. de, Carvalho, J. C. de A., Courteille, P. W., & Laliotis, A. (2024). Cooperative atomic emission from a line of atoms interacting with a resonant plane surface. Physical Review A, 110( 3), 032813-1-032813-9. doi:10.1103/PhysRevA.110.032813
NLM
Araújo MO de, Carvalho JC de A, Courteille PW, Laliotis A. Cooperative atomic emission from a line of atoms interacting with a resonant plane surface [Internet]. Physical Review A. 2024 ; 110( 3): 032813-1-032813-9.[citado 2025 out. 08 ] Available from: https://doi.org/10.1103/PhysRevA.110.032813
Vancouver
Araújo MO de, Carvalho JC de A, Courteille PW, Laliotis A. Cooperative atomic emission from a line of atoms interacting with a resonant plane surface [Internet]. Physical Review A. 2024 ; 110( 3): 032813-1-032813-9.[citado 2025 out. 08 ] Available from: https://doi.org/10.1103/PhysRevA.110.032813
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BAGNATO, Vanderlei Salvador. Physics of cold trapped atoms. 2024, Anais.. Bristol: Institute of Physics - IOP, 2024. Disponível em: https://www.lasphys.com/workshops/lasphys24/scientific-seminars. Acesso em: 08 out. 2025.
APA
Bagnato, V. S. (2024). Physics of cold trapped atoms. In Scientific Seminars. Bristol: Institute of Physics - IOP. Recuperado de https://www.lasphys.com/workshops/lasphys24/scientific-seminars
NLM
Bagnato VS. Physics of cold trapped atoms [Internet]. Scientific Seminars. 2024 ;[citado 2025 out. 08 ] Available from: https://www.lasphys.com/workshops/lasphys24/scientific-seminars
Vancouver
Bagnato VS. Physics of cold trapped atoms [Internet]. Scientific Seminars. 2024 ;[citado 2025 out. 08 ] Available from: https://www.lasphys.com/workshops/lasphys24/scientific-seminars
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MOREIRA, Noel Araujo e KAISER, Robin e BACHELARD, Romain. Nonlinear effects in Anderson localization of light by two-level atoms. Physical Review A, v. 109, n. 3, p. L031501-1-L031501-5, 2024Tradução . . Disponível em: https://doi.org/10.1103/PhysRevA.109.L031501. Acesso em: 08 out. 2025.
APA
Moreira, N. A., Kaiser, R., & Bachelard, R. (2024). Nonlinear effects in Anderson localization of light by two-level atoms. Physical Review A, 109( 3), L031501-1-L031501-5. doi:10.1103/PhysRevA.109.L031501
NLM
Moreira NA, Kaiser R, Bachelard R. Nonlinear effects in Anderson localization of light by two-level atoms [Internet]. Physical Review A. 2024 ; 109( 3): L031501-1-L031501-5.[citado 2025 out. 08 ] Available from: https://doi.org/10.1103/PhysRevA.109.L031501
Vancouver
Moreira NA, Kaiser R, Bachelard R. Nonlinear effects in Anderson localization of light by two-level atoms [Internet]. Physical Review A. 2024 ; 109( 3): L031501-1-L031501-5.[citado 2025 out. 08 ] Available from: https://doi.org/10.1103/PhysRevA.109.L031501
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Journal of Physics B: atomic, molecular and optical physics. . Bristol: Institute of Physics - IOP. . Acesso em: 08 out. 2025. , 2024
APA
Journal of Physics B: atomic, molecular and optical physics. (2024). Journal of Physics B: atomic, molecular and optical physics. Bristol: Institute of Physics - IOP.
NLM
Journal of Physics B: atomic, molecular and optical physics. 2024 ;[citado 2025 out. 08 ]
Vancouver
Journal of Physics B: atomic, molecular and optical physics. 2024 ;[citado 2025 out. 08 ]