Highly charged ions in the plasma produced by high-power laser can radiate bright and short-pulse X-rays. Owing to the unresolved transition array (UTA) from the high-Z elements, laser produced plasma has been applied for developing X-ray sources. In particular, X-rays in the water-window (WW) region (2.3–4.4 nm) is utilized as the light source of the X-ray microscopy to observe living organisms under high contrast and resolution. In this work, WW X-rays radiated from a laser (1064 nm, 6.2 ns) produced Au-plasma has been studied. UTA spectrum in the WW range has been observed through a grazing incident spectrometer (GIS). Dependence of Au-ion charge state distribution on laser intensity has been experimentally investigated and evaluated by ...
We present a laser plasma based x-ray microscope for the water window employing a high-average power...
We present a laser plasma based x ray microscope for the water window employing a high average power...
We present a laser plasma based x ray microscope for the water window employing a high average power...
X-ray microscope using water window X-rays (2.3-4.4 nm) emitted from laser plasmas enables us to obs...
X-ray emitted by a laser generated plasma has various applications. Serious issue to be solved is th...
Water window (WW) soft X-ray (wavelength: 2.3-4.4 nm) is a suitable light source for observing nanom...
X-ray microscope using water window (WW) X-rays (2.3 to 4.4 nm) is expected as one of the tools to o...
Water window (WW) soft X-rays (wavelength 2.3 to 4.4 nm) are easily absorbed by carbon and ...
Soft X-rays of the so-called water-window (WW) region (2.3-4.4 nm) are suitable as light sources in ...
Au ions with maximum charge states 58+ and with the kinetic energy in a region of ~100 MeV were reco...
Au ions with maximum charge states 58+ and with the kinetic energy in a region of ~100 MeV were reco...
Au ions with maximum charge states 58+ and with the kinetic energy in a region of ~100 MeV were reco...
Au ions with maximum charge states 58+ and with the kinetic energy in a region of ~100 MeV were reco...
To generate bright water-window (WW) soft x rays (2.3–4.4 nm), gold slab targets were irradiated wit...
Au ions with maximum charge states 58+ and with the kinetic energy in a region of ∼100 MeV were rec...
We present a laser plasma based x-ray microscope for the water window employing a high-average power...
We present a laser plasma based x ray microscope for the water window employing a high average power...
We present a laser plasma based x ray microscope for the water window employing a high average power...
X-ray microscope using water window X-rays (2.3-4.4 nm) emitted from laser plasmas enables us to obs...
X-ray emitted by a laser generated plasma has various applications. Serious issue to be solved is th...
Water window (WW) soft X-ray (wavelength: 2.3-4.4 nm) is a suitable light source for observing nanom...
X-ray microscope using water window (WW) X-rays (2.3 to 4.4 nm) is expected as one of the tools to o...
Water window (WW) soft X-rays (wavelength 2.3 to 4.4 nm) are easily absorbed by carbon and ...
Soft X-rays of the so-called water-window (WW) region (2.3-4.4 nm) are suitable as light sources in ...
Au ions with maximum charge states 58+ and with the kinetic energy in a region of ~100 MeV were reco...
Au ions with maximum charge states 58+ and with the kinetic energy in a region of ~100 MeV were reco...
Au ions with maximum charge states 58+ and with the kinetic energy in a region of ~100 MeV were reco...
Au ions with maximum charge states 58+ and with the kinetic energy in a region of ~100 MeV were reco...
To generate bright water-window (WW) soft x rays (2.3–4.4 nm), gold slab targets were irradiated wit...
Au ions with maximum charge states 58+ and with the kinetic energy in a region of ∼100 MeV were rec...
We present a laser plasma based x-ray microscope for the water window employing a high-average power...
We present a laser plasma based x ray microscope for the water window employing a high average power...
We present a laser plasma based x ray microscope for the water window employing a high average power...