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View article: Detection of two TeV gamma-ray outbursts from NGC 1275 by LHAASO
Detection of two TeV gamma-ray outbursts from NGC 1275 by LHAASO Open
The Water Cherenkov Detector Array (WCDA) is one of the components of Large High Altitude Air Shower Observatory (LHAASO) and can monitor any sources over two-thirds of the sky for up to 7 h per day with >98 per cent duty cycle. In this…
View article: Redox state and metabolic responses to severe heat stress in lenok Brachymystax lenok (Salmonidae)
Redox state and metabolic responses to severe heat stress in lenok Brachymystax lenok (Salmonidae) Open
In order to provide new insights into the physiological responses of lenok ( Brachymystax lenok : Salmonidae) to acute and severe heat stress (25°C, 48 h), dynamic changes in redox state and metabolic responses are studied combined biochem…
View article: Correction to: Intestinal metabolomics of juvenile lenok (Brachymystax lenok) in response to heat stress
Correction to: Intestinal metabolomics of juvenile lenok (Brachymystax lenok) in response to heat stress Open
View article: Calibration of the air shower energy scale of the water and air Cherenkov techniques in the LHAASO experiment
Calibration of the air shower energy scale of the water and air Cherenkov techniques in the LHAASO experiment Open
The Wide Field-of-View Cherenkov Telescope Array (WFCTA) and the Water Cherenkov Detector Arrays (WCDA) of LHAASO are designed to work in combination for measuring the energy spectra of various cosmic ray species over a very wide energy ra…
View article: Knee of the cosmic hydrogen and helium spectrum below 1 PeV measured by ARGO-YBJ and a Cherenkov telescope of LHAASO
Knee of the cosmic hydrogen and helium spectrum below 1 PeV measured by ARGO-YBJ and a Cherenkov telescope of LHAASO Open
The measurement of cosmic ray energy spectra, in particular for individual\nspecies, is an essential approach in finding their origin. Locating the "knees"\nof the spectra is an important part of the approach and has yet to be achieved.\nH…
View article: Giant negative thermal expansion covering room temperature in nanocrystalline GaN<i>x</i>Mn3
Giant negative thermal expansion covering room temperature in nanocrystalline GaN<i>x</i>Mn3 Open
Nanocrystalline antiperovskite GaNxMn3 powders were prepared by mechanically milling. The micrograin GaNxMn3 exhibits an abrupt volume contraction at the antiferromagnetic (AFM) to paramagnetic (PM) (AFM-PM) transition. The temperature win…