28. Yorke BA, Beddard GS, Owen RL, Pearson AR (2014) Time-resolved crystallography using
the Hadamard transform. Nat Methods 11(11):1131–1134
29. Makal A, Trzop E, Sokolow J, Kalinowski J, Benedict J, Coppens P (2011) The development
of Laue techniques for single-pulse diffraction of chemical complexes: time-resolved Laue
diffraction on a binuclear rhodium metal-organic complex. Acta Crystallogr A 67:319–326
30. Schmokel MS, Kaminski R, Benedict JB, Coppens P (2010) Data scaling and temperature
calibration in time-resolved photocrystallographic experiments. Acta Crystallogr A
66:632–636
31. Coppens P, Fournier B (2015) New methods in time-resolved Laue pump-probe crystallography at synchrotron sources. J Synchrotron Radiat 22:280–287
32. Bourgeois D, Wagner U, Wulff M (2000) Towards automated Laue data processing: application to the choice of optimal X-ray spectrum. Acta Crystallogr D Struct Biol 56:973–985
33. Coppens P, Vorontsov II, Graber T, Gembicky M, Kovalevsky AY (2005) The structure of
short-lived excited states of molecular complexes by time-resolved X-ray diffraction. Acta
Crystallogr A 61:162–172
34. Benedict JB, Makal A, Sokolow JD, Trzop E, Scheins S, Henning R, Graber T, Coppens P
(2011) Time-resolved Laue diffraction of excited species at atomic resolution: 100 ps singlepulse diffraction of the excited state of the organometallic complex Rh-2(mu-PNP)(2)(PNP)(2)
center dot BPh4. Chem Commun 47(6):1704–1706
35. Coppens P, Pitak M, Gembicky M, Messerschmidt M, Scheins S, Benedict J, Adachi S,
Sato T, Nozawa S, Ichiyanagi K, Chollet M, Koshihara S (2009) The RATIO method for timeresolved Laue crystallography. J Synchrotron Radiat 16:226–230
36. Vorontsov I, Pillet S, Kaminski R, Schmokel MS, Coppens P (2010) LASER – a program for
response-ratio refinement of time-resolved diffraction data. J Appl Cryst 43:1129–1130
37. Fournier B, Sokolow J, Coppens P (2016) Analysis of multicrystal pump-probe data sets. II
Scaling of ratio data sets. Acta Crystallogr A Found Adv 72:250–260
38. Fournier B, Coppens P (2014) On the assessment of time-resolved diffraction results. Acta
Crystallogr A Found Adv 70:291–299
39. Collet E, Moisan N, Balde C, Bertoni R, Trzop E, Laulhe C, Lorenc M, Servol M, Cailleau H,
Tissot A, Boillot ML, Graber T, Henning R, Coppens P, Buron-Le Cointe M (2012) Ultrafast
spin-state photoswitching in a crystal and slower consecutive processes investigated by
femtosecond optical spectroscopy and picosecond X-ray diffraction. Phys Chem Chem Phys
14(18):6192–6199
40. Coppens P, Iversen B, Larsen FK (2005) The use of synchrotron radiation in X-ray charge
density analysis of coordination complexes. Coord Chem Rev 249(1–2):179–195
41. Coppens P (2017) The dramatic development of X-ray photocrystallography over the past six
decades. Struct Dyn 4(3)
42. Spence JCH (2017) X-ray lasers in biology: structure and dynamics. In: Hawkes PW
(ed) Advances in imaging and electron physics, vol 200. Academic Press Inc, pp 103–152
43. Spence JCH (2017) XFELs for structure and dynamics in biology. Iucrj 4:322–339
44. Pande K, Hutchison CDM, Groenhof G, Aquila A, Robinson JS, Tenboer J, Basu S, Boutet S,
DePonte DP, Liang MN, White TA, Zatsepin NA, Yefanov O, Morozov D, Oberthuer D,
Gati C, Subramanian G, James D, Zhao Y, Koralek J, Brayshaw J, Kupitz C, Conrad C,
Roy-Chowdhury S, Coe JD, Metz M, Xavier PL, Grant TD, Koglin JE, Ketawala G,
Fromme R, Srajer V, Henning R, Spence JCH, Ourmazd A, Schwander P, Weierstall U,
Frank M, Fromme P, Barty A, Chapman HN, Moffat K, van Thor JJ, Schmidt M (2016)
Femtosecond structural dynamics drives the trans/cis isomerization in photoactive yellow
protein. Science 352(6286):725–729
45. Chapman HN, Fromme P, Barty A, White TA, Kirian RA, Aquila A, Hunter MS, Schulz J,
DePonte DP, Weierstall U, Doak RB, Maia F, Martin AV, Schlichting I, Lomb L, Coppola N,
Shoeman RL, Epp SW, Hartmann R, Rolles D, Rudenko A, Foucar L, Kimmel N,
Weidenspointner G, Holl P, Liang MN, Barthelmess M, Caleman C, Boutet S, Bogan MJ,
Krzywinski J, Bostedt C, Bajt S, Gumprecht L, Rudek B, Erk B, Schmidt C, Homke A,
266
P. R. Raithby
the Hadamard transform. Nat Methods 11(11):1131–1134
29. Makal A, Trzop E, Sokolow J, Kalinowski J, Benedict J, Coppens P (2011) The development
of Laue techniques for single-pulse diffraction of chemical complexes: time-resolved Laue
diffraction on a binuclear rhodium metal-organic complex. Acta Crystallogr A 67:319–326
30. Schmokel MS, Kaminski R, Benedict JB, Coppens P (2010) Data scaling and temperature
calibration in time-resolved photocrystallographic experiments. Acta Crystallogr A
66:632–636
31. Coppens P, Fournier B (2015) New methods in time-resolved Laue pump-probe crystallography at synchrotron sources. J Synchrotron Radiat 22:280–287
32. Bourgeois D, Wagner U, Wulff M (2000) Towards automated Laue data processing: application to the choice of optimal X-ray spectrum. Acta Crystallogr D Struct Biol 56:973–985
33. Coppens P, Vorontsov II, Graber T, Gembicky M, Kovalevsky AY (2005) The structure of
short-lived excited states of molecular complexes by time-resolved X-ray diffraction. Acta
Crystallogr A 61:162–172
34. Benedict JB, Makal A, Sokolow JD, Trzop E, Scheins S, Henning R, Graber T, Coppens P
(2011) Time-resolved Laue diffraction of excited species at atomic resolution: 100 ps singlepulse diffraction of the excited state of the organometallic complex Rh-2(mu-PNP)(2)(PNP)(2)
center dot BPh4. Chem Commun 47(6):1704–1706
35. Coppens P, Pitak M, Gembicky M, Messerschmidt M, Scheins S, Benedict J, Adachi S,
Sato T, Nozawa S, Ichiyanagi K, Chollet M, Koshihara S (2009) The RATIO method for timeresolved Laue crystallography. J Synchrotron Radiat 16:226–230
36. Vorontsov I, Pillet S, Kaminski R, Schmokel MS, Coppens P (2010) LASER – a program for
response-ratio refinement of time-resolved diffraction data. J Appl Cryst 43:1129–1130
37. Fournier B, Sokolow J, Coppens P (2016) Analysis of multicrystal pump-probe data sets. II
Scaling of ratio data sets. Acta Crystallogr A Found Adv 72:250–260
38. Fournier B, Coppens P (2014) On the assessment of time-resolved diffraction results. Acta
Crystallogr A Found Adv 70:291–299
39. Collet E, Moisan N, Balde C, Bertoni R, Trzop E, Laulhe C, Lorenc M, Servol M, Cailleau H,
Tissot A, Boillot ML, Graber T, Henning R, Coppens P, Buron-Le Cointe M (2012) Ultrafast
spin-state photoswitching in a crystal and slower consecutive processes investigated by
femtosecond optical spectroscopy and picosecond X-ray diffraction. Phys Chem Chem Phys
14(18):6192–6199
40. Coppens P, Iversen B, Larsen FK (2005) The use of synchrotron radiation in X-ray charge
density analysis of coordination complexes. Coord Chem Rev 249(1–2):179–195
41. Coppens P (2017) The dramatic development of X-ray photocrystallography over the past six
decades. Struct Dyn 4(3)
42. Spence JCH (2017) X-ray lasers in biology: structure and dynamics. In: Hawkes PW
(ed) Advances in imaging and electron physics, vol 200. Academic Press Inc, pp 103–152
43. Spence JCH (2017) XFELs for structure and dynamics in biology. Iucrj 4:322–339
44. Pande K, Hutchison CDM, Groenhof G, Aquila A, Robinson JS, Tenboer J, Basu S, Boutet S,
DePonte DP, Liang MN, White TA, Zatsepin NA, Yefanov O, Morozov D, Oberthuer D,
Gati C, Subramanian G, James D, Zhao Y, Koralek J, Brayshaw J, Kupitz C, Conrad C,
Roy-Chowdhury S, Coe JD, Metz M, Xavier PL, Grant TD, Koglin JE, Ketawala G,
Fromme R, Srajer V, Henning R, Spence JCH, Ourmazd A, Schwander P, Weierstall U,
Frank M, Fromme P, Barty A, Chapman HN, Moffat K, van Thor JJ, Schmidt M (2016)
Femtosecond structural dynamics drives the trans/cis isomerization in photoactive yellow
protein. Science 352(6286):725–729
45. Chapman HN, Fromme P, Barty A, White TA, Kirian RA, Aquila A, Hunter MS, Schulz J,
DePonte DP, Weierstall U, Doak RB, Maia F, Martin AV, Schlichting I, Lomb L, Coppola N,
Shoeman RL, Epp SW, Hartmann R, Rolles D, Rudenko A, Foucar L, Kimmel N,
Weidenspointner G, Holl P, Liang MN, Barthelmess M, Caleman C, Boutet S, Bogan MJ,
Krzywinski J, Bostedt C, Bajt S, Gumprecht L, Rudek B, Erk B, Schmidt C, Homke A,
266
P. R. Raithby
