The performance of a room temperature, zero-field MASER operating at 1.45 GHz has been examined. Nanosecond laser pulses, which are essentially instantaneous on the timescale of the spin dynamics, allow the visible-to-microwave conversion efficiency and temporal response of the MASER to be measured as a function of excitation energy. It is observed that the timing and amplitude of the MASER output pulse are correlated with the laser excitation energy: at higher laser energy, the microwave pulses have larger amplitude and appear after shorter delay than those recorded at lower laser energy. Seeding experiments demonstrate that the output variation may be stabilized by an external source and establish the minimum seeding power required. The d...
Masers, the microwave analogues of lasers, have seen a renaissance owing to the discovery of gain me...
Whereas the laser is nowadays an ubiquitous technology, applications for its microwave analog, the ...
The oscillation properties of an ammonia maser employing dual molecular beams and a Fabry-Perot type...
The United Kingdom Engineering and Physical Sciences Research Council (EPSRC) supported this work th...
The performance of a room temperature, zero-field MASER operating at 1.45 GHz has been examined. Nan...
Recently, the world’s first room-temperature maser was demonstrated. The maser consisted of a sapphi...
The maser—the microwave progenitor of the optical laser—has been confined to relative obscurity owin...
Recently, the world’s first room-temperature maser was demonstrated. The maser consisted of a sapphi...
The maser—the microwave progenitor of the optical laser—has been confined to relative obscurity owin...
The first solid-state masers to operate at room-temperature and ambient air-pressure were recently d...
The first solid-state masers to operate at room-temperature and ambient air-pressure were recently d...
While lasers have enjoyed greater popularity, masers—which emit coherent radiation in the microwave ...
Developing quantum technology has inspired scientists and engineers to exploit it in the real- world...
MASERs are devices that exploit stimulated emission to amplify electromagnetic waves at microwave fr...
A computational molecular design strategy, complemented by UV/vis absorption and time-resolved elect...
Masers, the microwave analogues of lasers, have seen a renaissance owing to the discovery of gain me...
Whereas the laser is nowadays an ubiquitous technology, applications for its microwave analog, the ...
The oscillation properties of an ammonia maser employing dual molecular beams and a Fabry-Perot type...
The United Kingdom Engineering and Physical Sciences Research Council (EPSRC) supported this work th...
The performance of a room temperature, zero-field MASER operating at 1.45 GHz has been examined. Nan...
Recently, the world’s first room-temperature maser was demonstrated. The maser consisted of a sapphi...
The maser—the microwave progenitor of the optical laser—has been confined to relative obscurity owin...
Recently, the world’s first room-temperature maser was demonstrated. The maser consisted of a sapphi...
The maser—the microwave progenitor of the optical laser—has been confined to relative obscurity owin...
The first solid-state masers to operate at room-temperature and ambient air-pressure were recently d...
The first solid-state masers to operate at room-temperature and ambient air-pressure were recently d...
While lasers have enjoyed greater popularity, masers—which emit coherent radiation in the microwave ...
Developing quantum technology has inspired scientists and engineers to exploit it in the real- world...
MASERs are devices that exploit stimulated emission to amplify electromagnetic waves at microwave fr...
A computational molecular design strategy, complemented by UV/vis absorption and time-resolved elect...
Masers, the microwave analogues of lasers, have seen a renaissance owing to the discovery of gain me...
Whereas the laser is nowadays an ubiquitous technology, applications for its microwave analog, the ...
The oscillation properties of an ammonia maser employing dual molecular beams and a Fabry-Perot type...