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      Reactor for boron fusion with picosecond ultrahigh power laser pulses and ultrahigh magnetic field trapping

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          Abstract

          Compared with the deuterium tritium (DT) fusion, the environmentally clean fusion of protons with 11B is extremely difficult. When instead of nanosecond laser pulses for thermal-ablating driven ignition, picosecond pulses are used, a drastic change by nonlinearity results in ultrahigh acceleration of plasma blocks. This radically changes to economic boron fusion by a measured new avalanche ignition.

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          Acceleration in femtosecond laser‐produced plasmas

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            Power flow control and power flow studies for systems with FACTS devices

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              Electron heating enhancement by frequency-chirped laser pulses

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                Author and article information

                Journal
                1511.03231

                Plasma physics
                Plasma physics

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