Year |
Citation |
Score |
2018 |
Milner AA, Korobenko A, Hepburn JW, Milner V. Probing molecular potentials with an optical centrifuge. The Journal of Chemical Physics. 147: 124202. PMID 28964029 DOI: 10.1063/1.5004788 |
0.38 |
|
2015 |
Korobenko A, Hepburn JW, Milner V. Observation of nondispersing classical-like molecular rotation. Physical Chemistry Chemical Physics : Pccp. 17: 951-6. PMID 25407341 DOI: 10.1039/C4Cp04434G |
0.308 |
|
2014 |
Milner AA, Korobenko A, Hepburn JW, Milner V. Effects of ultrafast molecular rotation on collisional decoherence. Physical Review Letters. 113: 043005. PMID 25105617 DOI: 10.1103/Physrevlett.113.043005 |
0.323 |
|
2014 |
Korobenko A, Milner AA, Hepburn JW, Milner V. Rotational spectroscopy with an optical centrifuge. Physical Chemistry Chemical Physics : Pccp. 16: 4071-6. PMID 24448425 DOI: 10.1039/C3Cp54598A |
0.346 |
|
2012 |
Zhdanovich S, Bloomquist C, Floß J, Averbukh IS, Hepburn JW, Milner V. Quantum resonances in selective rotational excitation of molecules with a sequence of ultrashort laser pulses Physical Review Letters. 109. DOI: 10.1103/Physrevlett.109.043003 |
0.351 |
|
2011 |
Konorov SO, Xu XG, Hepburn JW, Milner V. Frequency resolved optical gating of atomic and molecular coherence: From weak to strong field regimes Optics Infobase Conference Papers. DOI: 10.1364/Fio.2011.Ftup2 |
0.322 |
|
2011 |
Konorov SO, Hepburn JW, Milner V. Time- and frequency-resolved detection of atomic coherence in the regime of strong-field interaction with intense femtosecond laser pulses Physical Review a - Atomic, Molecular, and Optical Physics. 83. DOI: 10.1103/Physreva.83.033417 |
0.342 |
|
2010 |
Drane TM, Hepburn JW, Milner V. Coherent Raman spectroscopy through one-dimensional random scattering medium Journal of Modern Optics. 57: 1928-1935. DOI: 10.1080/09500340.2010.506010 |
0.326 |
|
2009 |
Hanna SJ, Campuzano-Jost P, Simpson EA, Burak I, Blades MW, Hepburn JW, Bertram AK. A study of oleic acid and 2,4-DHB acid aerosols using an IR-VUV-ITMS: insights into the strengths and weaknesses of the technique. Physical Chemistry Chemical Physics : Pccp. 11: 7963-75. PMID 19727503 DOI: 10.1039/B904748D |
0.315 |
|
2009 |
Konorov SO, Xu XG, Hepburn JW, Milner V. Characterization of transient molecular vibration excited with shaped femtosecond pulses. The Journal of Chemical Physics. 130: 234505. PMID 19548737 DOI: 10.1063/1.3152342 |
0.55 |
|
2009 |
Konorov SO, Xu XG, Hepburn JW, Milner V. Narrowband spectroscopy by an all-optical correlation of broadband laser pulses Physical Review a - Atomic, Molecular, and Optical Physics. 79. DOI: 10.1103/Physreva.79.031801 |
0.527 |
|
2009 |
Hanna SJ, Campuzano-Jost P, Simpson EA, Robb DB, Burak I, Blades MW, Hepburn JW, Bertram AK. A new broadly tunable (7.4-10.2 eV) laser based VUV light source and its first application to aerosol mass spectrometry International Journal of Mass Spectrometry. 279: 134-146. DOI: 10.1016/J.Ijms.2008.10.024 |
0.314 |
|
2008 |
Zhang Q, Hepburn JW. In situ accurate determination of the zero time delay between two independent ultrashort laser pulses by observing the oscillation of an atomic excited wave packet. Optics Letters. 33: 1893-5. PMID 18709124 DOI: 10.1364/Ol.33.001893 |
0.333 |
|
2008 |
Xu XG, Konorov SO, Hepburn JW, Milner V. Background-free coherent Raman spectroscopy by detecting the spectral phase of molecular vibrations. Optics Letters. 33: 1177-9. PMID 18516165 DOI: 10.1364/Ol.33.001177 |
0.516 |
|
2008 |
Zhdanovich S, Shapiro EA, Shapiro M, Hepburn JW, Milner V. Population transfer between two quantum states by piecewise chirping of femtosecond pulses: theory and experiment. Physical Review Letters. 100: 103004. PMID 18352183 DOI: 10.1103/Physrevlett.100.103004 |
0.316 |
|
2008 |
Xu XG, Konorov SO, Hepburn JW, Milner V. Noise autocorrelation spectroscopy with coherent Raman scattering Nature Physics. 4: 125-129. DOI: 10.1038/Nphys809 |
0.528 |
|
2007 |
Konorov SO, Xu XG, Turner RF, Blades MW, Hepburn JW, Milner V. Pulse optimization for Raman spectroscopy with cross-correlation frequency resolved optical gating. Optics Express. 15: 7564-71. PMID 19547082 DOI: 10.1364/Oe.15.007564 |
0.542 |
|
2007 |
Xu XG, Konorov SO, Zhdanovich S, Hepburn JW, Milner V. Complete characterization of molecular vibration using frequency resolved gating. The Journal of Chemical Physics. 126: 091102. PMID 17362094 DOI: 10.1063/1.2712839 |
0.551 |
|
2007 |
Konorov SO, Xu XG, Turner RFB, Blades MW, Hepburn JW, Milner V. Pulse optimization for Raman spectroscopy with cross-correlation frequency resolved optical gating Optics Express. 15: 7564-7571. DOI: 10.1364/OE.15.007564 |
0.45 |
|
2007 |
Hu Y, Griffiths K, Norton PR, Bussière G, Hepburn J. Laser induced thermal desorption of hydrogen from Zr(0 0 0 1): Relationship to water dissociation and hydrogen dissolution Surface Science. 601: 3645-3650. DOI: 10.1016/J.Susc.2007.07.004 |
0.708 |
|
2006 |
Suits AG, Hepburn JW. ION pair dissociation: Spectroscopy and dynamics. Annual Review of Physical Chemistry. 57: 431-65. PMID 16599817 DOI: 10.1146/Annurev.Physchem.56.092503.141209 |
0.565 |
|
2006 |
Bussière G, Musa M, Norton PR, Griffiths K, Brolo AG, Hepburn JW. Dynamics of D2 released from the dissociation of D2O on a zirconium surface. The Journal of Chemical Physics. 124: 124704. PMID 16599715 DOI: 10.1063/1.2179798 |
0.717 |
|
2006 |
Hu QJ, Hepburn JW. Energetics and dynamics of threshold photoion-pair formation in HFDF Journal of Chemical Physics. 124. DOI: 10.1063/1.2172606 |
0.397 |
|
2006 |
Hu QJ, Zhang Q, Hepburn JW. Threshold ion-pair production spectroscopy of HCN Journal of Chemical Physics. 124. DOI: 10.1063/1.2168153 |
0.369 |
|
2003 |
Hu QJ, Melville TC, Hepburn JW. Threshold ion-pair production spectroscopy of HCl/DCl: Born- oppenheimer breakdown in HCl and HCl+ and dynamics of photoion-pair formation Journal of Chemical Physics. 119: 8938-8945. DOI: 10.1063/1.1613932 |
0.338 |
|
2003 |
Rolland D, Specht AA, Blades MW, Hepburn JW. Resonance enhanced multiphoton dissociation of polycyclic aromatic hydrocarbons cations in an RF ion trap Chemical Physics Letters. 373: 292-298. DOI: 10.1016/S0009-2614(03)00517-7 |
0.335 |
|
2000 |
Shiell RC, Hu X, Hu QJ, Hepburn JW. Threshold ion-pair production spectroscopy (TIPPS) of H2 and D2 Faraday Discussions. 331-43; discussion. PMID 11040516 DOI: 10.1039/A909428H |
0.395 |
|
2000 |
Jarvis GK, Shiell RC, Hepburn JW, Song Y, Ng CY. Pulsed field ionization-photoion spectroscopy using two-bunch synchrotron radiation: Time-of-flight selection scheme Review of Scientific Instruments. 71: 1325-1331. DOI: 10.1063/1.1150458 |
0.316 |
|
2000 |
Shiell RC, Hu XK, Hu QJ, Hepburn JW. A Determination of the Bond Dissociation Energy (D0(H-SH)): Threshold Ion-Pair Production Spectroscopy (TIPPS) of a Triatomic Molecule Journal of Physical Chemistry A. 104: X1-4342. DOI: 10.1021/Jp000025K |
0.404 |
|
1999 |
Shiell RC, Evans M, Stimson S, Hsu CW, Ng CY, Hepburn JW. Characteristics of correlation satellites below 25 eV in xenon probed by pulsed-field-ionization-zero-kinetic-energy photoelectron spectroscopy Physical Review a - Atomic, Molecular, and Optical Physics. 59: 2903-2909. DOI: 10.1103/Physreva.59.2903 |
0.346 |
|
1999 |
Shiell R, Evans M, Stimson S, Hsu C, Ng C, Hepburn J. A ZEKE photoelectron study of the D2Π and 32Σ+ satellite states of CO+ Chemical Physics Letters. 315: 390-396. DOI: 10.1016/S0009-2614(99)01261-0 |
0.568 |
|
1998 |
Shiell RC, Evans M, Stimson S, Hsu CW, Ng CY, Hepburn JW. High resolution study of low lying correlation satellites in xenon Physical Review Letters. 80: 472-475. DOI: 10.1103/Physrevlett.80.472 |
0.371 |
|
1998 |
Martin JDD, Hepburn JW. Determination of bond dissociation energies by threshold ion-pair production spectroscopy: An improved D0(HCl) Journal of Chemical Physics. 109: 8139-8142. DOI: 10.1063/1.477476 |
0.403 |
|
1998 |
Morbi Z, Zhao C, Hepburn JW, Bernath PF. High-resolution visible laser spectroscopy of the B̃ 2B1-X̃ 2A1 transition of CaNH2 Journal of Chemical Physics. 108: 8891-8898. DOI: 10.1063/1.476336 |
0.325 |
|
1997 |
Martin JDD, Hepburn JW. Electric field induced dissociation of molecules in Rydberg-like highly vibrationally excited ion-pair states Physical Review Letters. 79: 3154-3157. DOI: 10.1103/Physrevlett.79.3154 |
0.329 |
|
1997 |
Martin JDD, Hepburn JW, Alcaraz C. Efficiency of high-n Rydberg-state stabilization in pulsed-field ionization zero-kinetic-energy photoelectron spectroscopy Journal of Physical Chemistry A. 101: 6728-6735. DOI: 10.1021/Jp970797P |
0.369 |
|
1995 |
Mank A, Nguyen T, Martin JDD, Hepburn JW. Zero-kinetic-energy electron spectroscopy of the predissociating A2+ state of HBr+ Physical Review A. 51: R1-R4. DOI: 10.1103/Physreva.51.R1 |
0.352 |
|
1994 |
Kong W, Hepburn JW. Rotationally resolved threshold photoelectron spectroscopy of O2 using coherent XUV: formation of vibrationally excited ions in the Franck-Condon gap Canadian Journal of Physics. 72: 1284-1293. DOI: 10.1139/P94-164 |
0.364 |
|
1994 |
Mank A, Rodgers D, Hepburn JW. Threshold photoelectron spectroscopy of HF Chemical Physics Letters. 219: 169-173. DOI: 10.1016/0009-2614(94)87040-3 |
0.397 |
|
1994 |
Kong W, Rodgers D, Hepburn JW. Pulsed field ionization threshold photelectron spectroscopy of the fluorescing N2O+ (A 2Σ+) state Chemical Physics Letters. 221: 301-306. DOI: 10.1016/0009-2614(94)00260-6 |
0.382 |
|
1993 |
Kong W, Rodgers D, Hepburn JW. Non-Franck-Condon intensity distributions in pulsed field ionization spectroscopy of NO+(a3sigma) and O2+(x2pig) Proceedings of Spie. 1858: 207-216. DOI: 10.1117/12.143087 |
0.34 |
|
1993 |
Kong W, Rodgers D, Hepburn JW, Wang K, McKoy V. Pulsed-field ionization threshold photoelectron spectroscopy with coherent extreme ultraviolet radiation: A comparison of CO and N2 The Journal of Chemical Physics. 99: 3159-3165. DOI: 10.1063/1.465176 |
0.36 |
|
1993 |
Kong W, Rodgers D, Hepburn JW. Formation of highly vibrationally excited states of O+ 2 by threshold pulsed field ionization using coherent XUV Chemical Physics Letters. 203: 497-502. DOI: 10.1016/0009-2614(93)85299-4 |
0.386 |
|
1989 |
Strauss CE, McBane GC, Houston PL, Burak I, Hepburn JW. The 157 nm photodissociation of OCS The Journal of Chemical Physics. 90: 5364-5372. DOI: 10.1063/1.456443 |
0.317 |
|
1989 |
Loo RO, Strauss CE, Haerri HP, Hall GE, Houston PL, Burak I, Hepburn JW. Vector correlations in the 157 nm photodissociation of OCS and the 266 nm photodissociation of methyl iodide Journal of the Chemical Society, Faraday Transactions 2: Molecular and Chemical Physics. 85: 1185-1205. DOI: 10.1039/F29898501185 |
0.333 |
|
1988 |
Waller IM, Hepburn JW. State-resolved photofragmentation dynamics of Fe(CO)5 at 193,248,266, and 351 nm The Journal of Chemical Physics. 88: 6658-6669. DOI: 10.1063/1.454406 |
0.318 |
|
1988 |
Sivakumar N, Hall GE, Houston PL, Hepburn JW, Burak I. State-resolved photodissociation of OCS monomers and clusters The Journal of Chemical Physics. 88: 3692-3708. DOI: 10.1063/1.453869 |
0.334 |
|
1988 |
Shapiro M, Hepburn JW, Brumer P. Simplified laser control of unimolecular reactions: Simultaneous (ω1, ω3) excitation Chemical Physics Letters. 149: 451-454. DOI: 10.1016/0009-2614(88)80362-2 |
0.318 |
|
1987 |
Waller IM, Hepburn JW. Photofragment spectroscopy of CS2 at 193 nm: Direct resolution of singlet and triplet channels The Journal of Chemical Physics. 87: 3261-3268. DOI: 10.1063/1.453018 |
0.344 |
|
1987 |
Burak I, Hepburn JW, Sivakumar N, Hall GE, Chawla G, Houston PL. State‐to‐state photodissociation dynamics of trans‐glyoxal The Journal of Chemical Physics. 86: 1258-1268. DOI: 10.1063/1.452215 |
0.343 |
|
1987 |
Waller IM, Davis HF, Hepburn JW. Photofragment spectroscopy of metal carbonyls: a molecular beam study of iron pentacarbonyl photolysis at 193 nm The Journal of Physical Chemistry. 91: 506-508. DOI: 10.1021/j100287a003 |
0.479 |
|
1986 |
Hall GE, Sivakumar N, Ogorzalek R, Chawla G, Haerri HP, Houston PL, Burak I, Hepburn JW. Product correlations in photofragment dynamics Faraday Discussions of the Chemical Society. 82: 13-24. DOI: 10.1039/Dc9868200013 |
0.317 |
|
1985 |
Bamford DJ, Filseth SV, Foltz MF, Hepburn JW, Moore CB. Photofragmentation dynamics of formaldehyde: CO(v,J) distributions as a function of initial rovibronic state and isotopic substitution Journal of Chemical Physics. 82: 3032-3041. DOI: 10.1063/1.448252 |
0.318 |
|
1983 |
Hepburn JW, Buss RJ, Butler LJ, Lee YT. Molecular beam study of the photochemistry of S1 glyoxal The Journal of Physical Chemistry. 87: 3638-3641. DOI: 10.1021/J100242A014 |
0.516 |
|
1983 |
Hepburn JW, Buss RJ, Butler LJ, Lee YT. Molecular beam study of the photochemistry of S1 glyoxal Journal of Physical Chemistry. 87: 3638-3641. |
0.516 |
|
1982 |
Hepburn JW, Northrup FJ, Ogram GL, Polanyi JC, Willamson JM. Rotationally inelastic scattering from surfaces CO(g) + LiF(OO1) Chemical Physics Letters. 85: 127-130. DOI: 10.1016/0009-2614(82)80315-1 |
0.43 |
|
1982 |
HEPBURN JW, TREVOR DJ, POLLARD JE, SHIRLEY DA, LEE YT. ChemInform Abstract: MULTIPHOTON IONIZATION PHOTOELECTRON SPECTROSCOPY OF DICHLORODIFLUOROMETHANE AND TRICHLOROFLUOROMETHANE Chemischer Informationsdienst. 13. DOI: 10.1002/Chin.198234041 |
0.42 |
|
1981 |
Hepburn JW, Liu K, Macdonald RG, Northrup FJ, Polanyi JC. Dynamics of nonadiabatic reactions. I. F (2P3/2, 2P1/2)+HBr (DBr)→HF (DF)+Br (2P 3/2, 2P1/2) The Journal of Chemical Physics. 75: 3353-3364. DOI: 10.1063/1.442497 |
0.595 |
|
1981 |
Hepburn JW, Klimek D, Liu K, MacDonald RG, Northrup FJ, Polanyi JC. Reactive cross section as a function of reagent energy. II. H(D)+HBr(DBr)→H2(HD,D2)+Br The Journal of Chemical Physics. 74: 6226-6241. DOI: 10.1063/1.441014 |
0.641 |
|
1981 |
Hepburn JW, Klimek D, Liu K, Macdonald RG, Mayne HR, Northrup FJ, Polanyi JC. Isotope effects in abstraction and exchange reactions H + H′Br International Journal of Chemical Kinetics. 13: 845-854. DOI: 10.1002/Kin.550130908 |
0.534 |
|
1978 |
Hepburn JW, Klimek D, Liu K, Polanyi JC, Wallace SC. Reactive cross section as a function of collision energy. I. H(D)+Br 2→HBr(DBr)+Br The Journal of Chemical Physics. 69: 4311-4312. DOI: 10.1063/1.437088 |
0.631 |
|
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