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Preface; Contents; Contributors; Part I X-Ray Lasers ; Progress and Prospects of Coherent X-Ray Research Using High Power Lasers in Japan Atomic Energy Agency ; 1 Introduction; 2 Observation of X-Ray Mirage Using the 13.9nm Laser; 3 Beam Characterization of High-Order Harmonics Emission from a Relativistic Plasma ; 4 Application of XRL for Probing Surface Dynamics of Femto-Second Laser Ablation ; 5 Future Porspects of High Power Laser Science in JAEA; 6 Summary; References; Advances in High Average Power, 100 Hz Repetition Rate Table-Top Soft X-Ray Lasers ; 1 Introduction.

5 Possibility of Gain Increase in CV (2₂!) Transition at 4.0nm Via Quantum Coherence 6 Ultraintense Femtosecond Plasma Laser for Pumping XRLs; References; Overview of Development of Laser Driven Secondary Sources at PALS and ELI ; 1 Introduction; 2 PALS Beamlines; 2.1 Iodine kJ Laser Beamline; 3 Ti:Sapphire 20 TW Laser Beamline; 4 Secondary Sources and Its Specifications at PALS Facility; 4.1 Ne-Like Zn X-ray Laser; 5 Temporal Coherence and the Spectral Bandwidth; 6 Demonstration of Transient Lasing of Ni-Like Mo; 7 Single Shot Measurement of Spatial Coherence; 8 ELI Beamlines Project.

9 Summary and Future ProspectsReferences; Spectral Properties of Collisional Xuv Lasers for the Amplification of Femtosecond Pulses ; 1 Introduction; 2 Summary of Measured Bandwidths; 3 Spectral Width and Dynamical Amplification ; 4 Conclusions; References; Transient Collisionally Excited X-ray Lasers Pumped with One Long and Two Short Pulses ; 1 Introduction; 2 Pump Energy Reduction; 3 Multiple Pulses for Additional Control; 4 Experimental Results; 5 Conclusions and Outlook; 6 Acknowledgements; References; Seeded Operation of a Ne-like Titanium Soft X-Ray Laser ; 1 Introduction.

2 Plasma Based Soft X-Ray Laser2.1 Initial Setup; 2.2 Double Short Pulse Pumping; 3 Seeded Operation of the X-Ray Laser Amplifier; 4 Conclusion; References; Output Beam Polarisation of X-ray Lasers with Transient Inversion ; 1 Introduction; 2 Experiment; 2.1 Set-up and Measurement; 3 Results and Analysis; References; Improved Sub-10 nm Ni-like Lasing by Varying the Slope of the Traveling-Wave Velocity ; 1 Introduction; 2 Discussion on the Spatio-Temporal Mismatch Between TWE and ASE ; 3 Design of a Modified 'Ross' Focusing Scheme with Increasing Traveling-Wave Velocity ; 4 Conclusion.

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