• Photonics Research
  • Vol. 11, Issue 5, 750 (2023)
Mario Zitelli1、*, Vincent Couderc2, Mario Ferraro1, Fabio Mangini1, Pedro Parra-Rivas1, Yifan Sun1, and Stefan Wabnitz1、3
Author Affiliations
  • 1Department of Information Engineering, Electronics and Telecommunications, Università degli Studi di Roma Sapienza, 00184 Rome, Italy
  • 2Université de Limoges, XLIM, UMR CNRS 7252, 87060 Limoges, France
  • 3CNR-INO, Istituto Nazionale di Ottica, 80078 Pozzuoli, Italy
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    DOI: 10.1364/PRJ.484271 Cite this Article Set citation alerts
    Mario Zitelli, Vincent Couderc, Mario Ferraro, Fabio Mangini, Pedro Parra-Rivas, Yifan Sun, Stefan Wabnitz. Spatiotemporal mode decomposition of ultrashort pulses in linear and nonlinear graded-index multimode fibers[J]. Photonics Research, 2023, 11(5): 750 Copy Citation Text show less
    Experiments with 1 m and 5 km of GRIN MMF, 1.4 ps pulses at 1550 nm, 100 pJ pulse energy, lateral shift of 4 μm. (a) Measured near field at 1 m. (b) Measured near field at 5 km. (c) Instantaneous power at 5 km (measured and reconstructed). (d) Reconstructed near field at 5 km.
    Fig. 1. Experiments with 1 m and 5 km of GRIN MMF, 1.4 ps pulses at 1550 nm, 100 pJ pulse energy, lateral shift of 4 μm. (a) Measured near field at 1 m. (b) Measured near field at 5 km. (c) Instantaneous power at 5 km (measured and reconstructed). (d) Reconstructed near field at 5 km.
    (a) Mean power fractions for test with 1.4 ps, 5 km, 100 pJ, shift 4 μm. (b) Test with 70 fs, 830 m, 100 pJ, shift 15 μm. (c) T and μ for the test of case (a) versus pulse energy. (d) T and μ for the test of case (b) versus lateral shift.
    Fig. 2. (a) Mean power fractions for test with 1.4 ps, 5 km, 100 pJ, shift 4 μm. (b) Test with 70 fs, 830 m, 100 pJ, shift 15 μm. (c) T and μ for the test of case (a) versus pulse energy. (d) T and μ for the test of case (b) versus lateral shift.
    Experiment with 6 and 830 m of GRIN MMF, 70 fs pulses at 1550 nm, 100 pJ pulse energy, and lateral input beam offset of 15 μm. (a) Measured near field at 6 m. (b) Measured near field at 830 m. (c) Instantaneous power at 830 m (measured and reconstructed). (d) Reconstructed near field at 830 m.
    Fig. 3. Experiment with 6 and 830 m of GRIN MMF, 70 fs pulses at 1550 nm, 100 pJ pulse energy, and lateral input beam offset of 15 μm. (a) Measured near field at 6 m. (b) Measured near field at 830 m. (c) Instantaneous power at 830 m (measured and reconstructed). (d) Reconstructed near field at 830 m.
    Experiments with 1 m, 830 m, and 5 km of GRIN fiber, with input CW beam at 1460 nm, 1 μW power, an input beam diffuser, and a lateral shift of 15 μm.
    Fig. 4. Experiments with 1 m, 830 m, and 5 km of GRIN fiber, with input CW beam at 1460 nm, 1 μW power, an input beam diffuser, and a lateral shift of 15 μm.
    Experiments with 5 km of GRIN MMF, 70 fs pulses at 1550 nm, lateral shift of 10 μm. (a)–(c) Measured near field, output power, and mean modal power fraction for input pulse energy of 200 pJ. (d)–(f) Measured near field, output power, and mean modal power fraction for input pulse energy of 1.3 nJ, corresponding to the formation of a multimode soliton.
    Fig. 5. Experiments with 5 km of GRIN MMF, 70 fs pulses at 1550 nm, lateral shift of 10 μm. (a)–(c) Measured near field, output power, and mean modal power fraction for input pulse energy of 200 pJ. (d)–(f) Measured near field, output power, and mean modal power fraction for input pulse energy of 1.3 nJ, corresponding to the formation of a multimode soliton.
    Mario Zitelli, Vincent Couderc, Mario Ferraro, Fabio Mangini, Pedro Parra-Rivas, Yifan Sun, Stefan Wabnitz. Spatiotemporal mode decomposition of ultrashort pulses in linear and nonlinear graded-index multimode fibers[J]. Photonics Research, 2023, 11(5): 750
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