Robert G. Batchko, Ph.D. - Publications

Affiliations: 
2000 Stanford University, Palo Alto, CA 
Area:
Electronics and Electrical Engineering

25/28 high-probability publications. We are testing a new system for linking publications to authors. You can help! If you notice any inaccuracies, please sign in and mark papers as correct or incorrect matches. If you identify any major omissions or other inaccuracies in the publication list, please let us know.

Year Citation  Score
2012 Batchko RG, Robinson S, Yiu J, Szilagyi A, Mansell J. Large-Format Tunable Fluidic Lenses for High-Resolution Rapid Focusing Rundbrief Der Gi-Fachgruppe 5.10 Informationssystem-Architekturen. DOI: 10.1364/Isa.2012.Im2C.4  0.663
2006 Bagwell BE, Wick DV, Batchko R, Mansell JD, Martinez T, Restaino SR, Payne DM, Harriman J, Serati S, Sharp G, Schwiegerling J. Liquid crystal based active optics Proceedings of Spie - the International Society For Optical Engineering. 6289. DOI: 10.1117/12.694891  0.642
2004 SHUR VY, SHISHKIN E, RUMYANTSEV E, NIKOLAEVA E, SHUR A, BATCHKO R, FEJER M, GALLO K, KURIMURA S, TERABE K, KITAMURA K. Self-Organization in LiNbO3and LiTaO3: Formation of Micro- and Nano-Scale Domain Patterns Ferroelectrics. 304: 111-116. DOI: 10.1080/00150190490457636  0.55
2002 Shur VY, Rumyantsev EL, Nikolaeva EV, Shishkin EI, Batchko RG, Fejer MM, Byer RL, Mnushkina I. Domain kinetics in congruent and stoichiometric lithium niobate Ferroelectrics. 269: 189-194. DOI: 10.1080/00150190211162  0.62
2001 Meng X, Diels JC, Kuehlke D, Batchko R, Byer R. Bidirectional, synchronously pumped, ring optical parametric oscillator. Optics Letters. 26: 265-7. PMID 18040296 DOI: 10.1364/Ol.26.000265  0.522
2001 Shur VY, Rumyantsev EL, Nikolaeva EV, Shishkin EI, Batchko RG, Fejer MM, Byer RL. Recent achievements in domain engineering in lithium niobate and lithium tantalate Ferroelectrics. 257: 191-202. DOI: 10.1080/00150190108016300  0.642
2001 Shur VY, Rumyantsev EL, Nikolaeva EV, Shishkin EI, Fursov DV, Batchko RG, Eyres LA, Fejer MM, Byer RL, Sindel J. Formation of self-organized nanodomain patterns during spontaneous backswitching in lithium niobate Ferroelectrics. 253: 105-114. DOI: 10.1080/00150190108008448  0.608
2001 Shur VY, Rumyantsev EL, Nikolaeva EV, Shishkin EI, Fursov DV, Batchko RG, Eyres LA, Fejer MM, Byer RL, Sindel J. Formation of self-organized nanodomain patterns during spontaneous backswitching in lithium niobate Ferroelectrics. 253.  0.335
2000 Shur VY, Rumyantsev EL, Nikolaeva EV, Shishkin EI, Batchko RG, Miller GD, Fejer MM, Byer RL. Regular ferroelectric domain array in lithium niobate crystals for nonlinear optic applications Ferroelectrics. 236: 129-144. DOI: 10.1080/00150190008016047  0.666
2000 Shur VY, Rumyantsev EL, Nikolaeva EV, Shishkin EI, Fursov DV, Batchko RG, Eyres LA, Fejer MM, Byer RL. Nanoscale backswitched domain patterning in lithium niobate Applied Physics Letters. 76: 143-145. DOI: 10.1063/1.125683  0.643
2000 Shur VY, Rumyantsev EL, Nikolaeva EV, Shishkin EI, Batchko RG, Miller GD, Fejer MM, Byer RL. Regular ferroelectric domain array in lithium niobate crystals for nonlinear optic applications Ferroelectrics. 236: 129-144.  0.454
2000 Missey MJ, Russell S, Dominic V, Batchko RG, Schepler KL. Real-time visualization of domain formation in periodically poled lithium niobate Optics Express. 6: 186-195.  0.313
2000 Shur VY, Rumyantsev EL, Nikolaeva EV, Shishkin EI, Fursov DV, Batchko RG, Eyres LA, Fejer MM, Byer RL. Nanoscale backswitched domain patterning in lithium niobate Applied Physics Letters. 76: 143-145.  0.393
1999 Bäder U, Meyn JP, Bartschke J, Weber T, Borsutzky A, Wallenstein R, Batchko RG, Fejer MM, Byer RL. Nanosecond periodically poled lithium niobate optical parametric generator pumped at 532 nm by a single-frequency passively Q-switched Nd:YAG laser. Optics Letters. 24: 1608-10. PMID 18079879 DOI: 10.1364/Ol.24.001608  0.615
1999 Batchko RG, Fejer MM, Byer RL, Woll D, Wallenstein R, Shur VY, Erman L. Continuous-wave quasi-phase-matched generation of 60 mW at 465 nm by single-pass frequency doubling of a laser diode in backswitch-poled lithium niobate. Optics Letters. 24: 1293-5. PMID 18079784 DOI: 10.1364/Ol.24.001293  0.61
1999 Shur VY, Rumyantsev EL, Batchko RG, Miller GD, Fejer MM, Byer RL. Domain kinetics in the formation of a periodic domain structure in lithium niobate Physics of the Solid State. 41: 1681-1687. DOI: 10.1134/1.1131068  0.653
1999 Shur V, Rumyantsev E, Batchko R, Miller G, Fejer M, Byer R. Physical basis of the domain engineering in the bulk ferroelectrics Ferroelectrics. 221: 157-167. DOI: 10.1080/00150199908016450  0.615
1999 Batchko RG, Shur VY, Fejer MM, Byer RL. Backswitch poling in lithium niobate for high-fidelity domain patterning and efficient blue light generation Applied Physics Letters. 75: 1673-1675. DOI: 10.1063/1.124787  0.678
1999 Batchko RG, Shur VY, Fejer MM, Byer RL. Backswitch poling in lithium niobate for high-fidelity domain patterning and efficient blue light generation Applied Physics Letters. 75: 1673-1675.  0.46
1999 Batchko RG, Miller GD, Shur VY, Rumyantsev EL, Fejer MM, Byer RL. Domain patterning in lithium niobate using spontaneous backswitching Proceedings of Spie - the International Society For Optical Engineering. 3610: 36-43.  0.448
1999 Shur VY, Rumyantsev EL, Batchko RG, Miller GD, Fejer MM, Byer RL. Domain kinetics in the formation of a periodic domain structure in lithium niobate Physics of the Solid State. 41: 1681-1687.  0.414
1998 Batchko RG, Weise DR, Plettner T, Miller GD, Fejer MM, Byer RL. Continuous-wave 532-nm-pumped singly resonant optical parametric oscillator based on periodically poled lithium niobate. Optics Letters. 23: 168-70. PMID 18084448 DOI: 10.1364/Ol.23.000168  0.682
1998 Shur VY, Batchko RG, Rumyantsev EL, Miller GD, Fejer MM, Byer RL. Domain engineering: Periodic domain patterning in lithium niobate Ieee International Symposium On Applications of Ferroelectrics. 399-405.  0.444
1997 Miller GD, Batchko RG, Tulloch WM, Weise DR, Fejer MM, Byer RL. 42%-efficient single-pass cw second-harmonic generation in periodically poled lithium niobate. Optics Letters. 22: 1834-6. PMID 18188379 DOI: 10.1364/Ol.22.001834  0.618
1997 Miller GD, Batchko RG, Tulloch WM, Weise DR, Fejer MM, Byer RL. 42% Efficient single-pass second-harmonic generation of continuous wave Nd:YAG laser output in 5.3-cm-length periodically poled lithium niobate Conference Proceedings - Lasers and Electro-Optics Society Annual Meeting-Leos. 11: 58-59.  0.362
Low-probability matches (unlikely to be authored by this person)
2000 Missey MJ, Russell S, Dominic VG, Batchko RG, Schepler KL. Real-time visualization of domain formation in periodically poled lithium niobate Optics Express. 6: 186-195. PMID 19404350 DOI: 10.1364/Oe.6.000186  0.267
2014 Batchko R, Robinson S, Schmidt J, Graniela B. A variable-collimation display system Proceedings of Spie. 9011: 901109. DOI: 10.1117/12.2044075  0.217
1999 Kretschmann HM, Huber G, Batchko RG, Meyn JP, Fejer MM, Byer RL. Singly resonant, continuous wave, sum frequency mixing of two Nd3+ lasers in periodically poled lithium niobate Laser Physics. 9: 293-298.  0.198
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