Top Curr Chem (Z) (2018) 376:10
1 3
24. Hamm P, Zanni MT (2011) Concepts and methods of 2D infrared spectroscopy. Cambridge University Press, Cambridge
25. Brixner T, Stiopkin IV, Fleming GR (2004) Tunable two-dimensional femtosecond spectroscopy.
Opt Lett 29:884–886
26. Augulis R, Zigmantas D (2011) Two-dimensional electronic spectroscopy with double modulation
lock-in detection: enhancement of sensitivity and noise resistance. Opt Express 19:13126–13133
27. Selig U, Langhojer F, Dimler F et  al (2008) Inherently phase-stable coherent two-dimensional
spectroscopy using only conventional optics. Opt Lett 33:2851–2853
28. Heisler IA, Moca R, Camargo FVA, Meech SR (2014) Two-dimensional electronic spectroscopy
based on conventional optics and fast dual chopper data acquisition. Rev Sci Instrum 85:063103.
https ://doi.org/10.1063/1.48798 22
29. Bizimana LA, Brazard J, Carbery WP et al (2015) Resolving molecular vibronic structure using
high-sensitivity two-dimensional electronic spectroscopy. J Chem Phys 143:164203
30. Levenson MD, Eesley GL (1979) Polarization selective optical heterodyne detection for dramatically improved sensitivity in laser spectroscopy. Appl Phys Mater Sci Process 19:1–17
31. Tian P, Keusters D, Suzaki Y, Warren WS (2003) Femtosecond phase-coherent two-dimensional
spectroscopy. Science 300:1553–1555
32. Keusters D, Tan H-S, Warren (1999) Role of pulse phase and direction in two-dimensional optical
spectroscopy. J Phys Chem A 103:10369–10380. https ://doi.org/10.1021/jp992 325b
33. Gallagher Faeder SM, Jonas DM (1999) Two-dimensional electronic correlation and relaxation
spectra: theory and model calculations. J Phys Chem A 103:10489–10505. https ://doi.org/10.1021/
jp992 5738
34. Tekavec PF, Myers JA, Lewis KL, Ogilvie JP (2009) Two-dimensional electronic spectroscopy
with a continuum probe. Opt Lett 34:1390–1392
35. Tekavec PA, Lewis KLM, Fuller FD et al (2012) Toward broad bandwidth 2-D electronic spectroscopy: correction of chirp from a continuum probe. IEEE J Sel Top Quantum Electron 18:210–217.
https ://doi.org/10.1109/JSTQE .2011.21099 41
36. Mehlenbacher RD, McDonough TJ, Grechko M et al (2015) Energy transfer pathways in semiconducting carbon nanotubes revealed using two-dimensional white-light spectroscopy. 6:6732. https
://doi.org/10.1038/ncomm s7732
https ://www.natur e.com/artic les/ncomm s7732 #suppl ement aryinfor matio n
37. Tekavec PA, Myers JA, Lewis KLM et al (2010) Effects of chirp on two-dimensional Fourier transform electronic spectra. Opt Express 18:11015–11024
38. Shim S-H, Zanni MT (2009) How to turn your pump-probe instrument into a multidimensional
spectrometer: 2D IR and Vis spectroscopies via pulse shaping. Phys Chem Chem Phys 11:748–
761. https ://doi.org/10.1039/b8138 17f
39. Seiler H, Palato S, Schmidt BE, Kambhampati P (2017) Simple fiber-based solution for coherent multidimensional spectroscopy in the visible regime. Opt Lett 42:643. https ://doi.org/10.1364/
OL.42.00064 3
40. Brida D, Manzoni C, Cerullo G (2012) Phase-locked pulses for two-dimensional spectroscopy by a
birefringent delay line. Opt Lett 37:3027–3029
41. Réhault J, Maiuri M, Oriana A, Cerullo G (2014) Two-dimensional electronic spectroscopy with
birefringent wedges. Rev Sci Instrum 85:123107. https ://doi.org/10.1063/1.49029 38
42. Seiler H, Palato S, Kambhampati P (2017) Coherent multi-dimensional spectroscopy at optical frequencies in a single beam with optical readout. J Chem Phys 147:094203. https ://doi.
org/10.1063/1.49905 00
43. Fuller FD, Ogilvie JP (2015) Experimental implementations of two-dimensional fourier transform
electronic spectroscopy. Annu Rev Phys Chem 66:667–690. https ://doi.org/10.1146/annur ev-physc
hem-04051 3-10362 3
44. Cho M, Brixner T, Stiopkin I et al (2006) Two dimensional electronic spectroscopy of molecular
complexes. J Chin Chem Soc 53:15–24. https ://doi.org/10.1002/jccs.20060 0002
45. Ernst RR, Bodenhausen G, Wokaun A (1987) Principles of nuclear magnetic resonance in one and
two dimensions. Oxford University Press, Oxford
46. Lazonder K, Pshenichnikov MS, Wiersma DA (2006) Easy interpretation of optical two-dimensional correlation spectra. Opt Lett 31:3354–3356
47. Lazonder K, Pshenichnikov MS, Wiersma DA (2007) Two-dimensional optical correlation spectroscopy applied to liquid/glass dynamics. In: Ultrafast phenomena XV. Springer, pp 356–358
58
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