Contributors |
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ix | |
Preface |
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xiii | |
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1 Engineered Open Systems and Quantum Simulations with Atoms and Ions |
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1 | (80) |
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3 | (3) |
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2 Digital Quantum Simulation with Trapped Ions and Rydberg Atoms |
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6 | (29) |
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3 Engineered Open Systems with Cold Atoms |
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35 | (34) |
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69 | (12) |
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71 | (1) |
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71 | (10) |
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2 Entanglement of Two Atoms Using Rydberg Blockade |
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81 | (36) |
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82 | (2) |
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2 Entanglement Using Rydberg Blockade |
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84 | (3) |
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3 Trapping and Readout of Single Atoms |
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87 | (6) |
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93 | (3) |
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5 Coherent Rydberg Rabi Flopping |
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96 | (5) |
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101 | (2) |
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103 | (2) |
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8 Entanglement Verification |
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105 | (2) |
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107 | (10) |
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112 | (1) |
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112 | (5) |
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3 Atomic and Molecular Ionization Dynamics in Strong Laser Fields: From Optical to X-rays |
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117 | (42) |
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118 | (2) |
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2 The First 30 Years of Multiphoton Physics (1963-1993) |
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120 | (6) |
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3 Wavelength Scaling of Strong-Field Atomic Physics |
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126 | (5) |
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4 Low-Energy Structure in Photoelectron Energy Distribution in the Strong-Field Limit |
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131 | (6) |
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5 Electron Momentum Distribution and Time-Dependent Imaging |
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137 | (4) |
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6 Non-Sequential Multiple Ionization at Long Wavelengths |
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141 | (5) |
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7 Strong-Field X-Ray Physics: A Future Path |
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146 | (5) |
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151 | (8) |
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152 | (1) |
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152 | (7) |
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4 Frontiers of Atomic High-Harmonic Generation |
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159 | (50) |
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160 | (3) |
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2 Fundamental Concepts of HHG and Attosecond Pulses |
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163 | (16) |
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3 Hard X-Ray HHG and Zeptosecond Pulses |
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179 | (9) |
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4 HHG in Shaped Driving Pulses |
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188 | (4) |
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5 Experimental Applications |
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192 | (4) |
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196 | (13) |
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197 | (12) |
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5 Teaching an Old Dog New Tricks: Using the Flowing Afterglow to Measure Kinetics of Electron Attachment to Radicals, Ion-Ion Mutual Neutralization, and Electron Catalyzed Mutual Neutralization |
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209 | (86) |
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1 Brief History of Ion Flow Tube Apparatuses |
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210 | (5) |
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2 Electron Attachment Using the Traditional FALP Technique |
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215 | (4) |
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219 | (11) |
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4 Electron Attachment to Transient Species |
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230 | (33) |
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5 Mutual Neutralization of Anion-Cation Pairs |
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263 | (16) |
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6 Electron Catalyzed Mutual Neutralization |
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279 | (5) |
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284 | (11) |
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286 | (1) |
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286 | (9) |
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6 Superradiance: An Integrated Approach to Cooperative Effects in Various Systems |
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295 | (36) |
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296 | (3) |
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299 | (5) |
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3 Cooperative Effects in a Homogeneous Gas of Two-Level Atoms |
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304 | (10) |
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4 Correlation and Entanglement |
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314 | (2) |
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316 | (3) |
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319 | (6) |
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325 | (6) |
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326 | (1) |
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326 | (5) |
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7 Construction of the Resolvent for a Few-body System |
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331 | (78) |
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333 | (9) |
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2 Scattering Amplitude and the Resolvent |
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342 | (2) |
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3 Resolvent; Preliminary Considerations |
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344 | (5) |
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4 Evolution of a Free-Particle Wavepacket |
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349 | (6) |
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355 | (2) |
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357 | (2) |
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359 | (5) |
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8 Time-Translation Operator |
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364 | (11) |
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375 | (10) |
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385 | (10) |
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395 | (14) |
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395 | (11) |
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406 | (3) |
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8 Beyond the Rayleigh Limit in Optical Lithography |
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409 | (58) |
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410 | (3) |
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2 Classical Photolithography and the Diffraction Limit |
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413 | (3) |
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3 Classical Multi-Photon Lithography |
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416 | (2) |
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4 Quantum Interferometric Optical Lithography |
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418 | (5) |
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5 Sub wavelength Interferometric Lithography Via Classical Light |
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423 | (17) |
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6 Resonant Subwavelength Lithography Via Dark State |
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440 | (10) |
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7 Subwavelength Photolithography Via Rabi Oscillations |
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450 | (10) |
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460 | (7) |
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461 | (1) |
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462 | (5) |
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9 The Autler-Townes Effect in Molecules: Observations, Theory, and Applications |
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467 | (48) |
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468 | (6) |
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474 | (10) |
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484 | (2) |
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4 Applications to Molecules |
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486 | (22) |
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508 | (7) |
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509 | (1) |
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509 | (6) |
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10 Kilohertz-driven Bose-Einstein Condensates in Optical Lattices |
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515 | (34) |
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516 | (2) |
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2 The Quest for Floquet Condensates |
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518 | (6) |
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3 The Experimental Setup: Shaken Optical Lattices |
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524 | (4) |
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4 The Driven Bose-Hubbard Model |
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528 | (2) |
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5 Interference Patterns Produced by Floquet States |
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530 | (9) |
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539 | (5) |
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544 | (5) |
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544 | (1) |
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545 | (4) |
Index |
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549 | (20) |
Contents of Volumes in this Serial |
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569 | |