Magnetic heat pumps, refrigerators and energy conversion prototypes, with an operation based on the magnetocaloric effect, usually show a restriction in their frequency of operation to a few Hertz. In 2010 it was proposed to apply thermal switches to overcome this barrier. In this article thermal switches built with Ni-nanowire Peltier elements are presented and the performance of such elements is discussed on a theoretical and experimental basis. Finally an approximate estimate of the performance of a magnetic refrigerator of the types built up to present is compared to that of a magnetic refrigerator applying nanowire thermal switches
International audienceIn order to provide continuous cooling at 50 mK for space or laboratory applic...
The magnetocaloric effect (MCE) has been intensively studied for novel energy efficient thermal mana...
A unique multiferroic type of thermomagnetic generator is being investigated in order to establish i...
Magnetic heat pumps, refrigerators and energy conversion prototypes, with an operation based on the ...
The major hurdle for commercialization of room temperature magnetic refrigeration is the inadequate ...
The quest for better performance from magnetocaloric devices has led to the development of thermal c...
Magnetic refrigeration as an alternative for vapor-compression technology has been the subject of ma...
Thermal switches are advanced heat-management devices that represent a new opportunity to improve th...
Thermal control elements, i.e., thermal diodes, switches, and regulators, can control the heat flow ...
Magnetocaloric materials are promising in the realization of some thermodynamic machines in substitu...
Spin-related effects in thermoelectricity can be used to design more efficient refrigerators and off...
Abstract—The search for novel spintronic devices brings about new ways to control switching in magne...
This thesis demonstrates two new device concepts that are based on the tunneling and giant magnetore...
The cooling power of a magnetocaloric cooling system scales with the cycle frequency. Therefore, a h...
We present a parallel network of 16 demagnetization refrigerators mounted on a cryofree dilution ref...
International audienceIn order to provide continuous cooling at 50 mK for space or laboratory applic...
The magnetocaloric effect (MCE) has been intensively studied for novel energy efficient thermal mana...
A unique multiferroic type of thermomagnetic generator is being investigated in order to establish i...
Magnetic heat pumps, refrigerators and energy conversion prototypes, with an operation based on the ...
The major hurdle for commercialization of room temperature magnetic refrigeration is the inadequate ...
The quest for better performance from magnetocaloric devices has led to the development of thermal c...
Magnetic refrigeration as an alternative for vapor-compression technology has been the subject of ma...
Thermal switches are advanced heat-management devices that represent a new opportunity to improve th...
Thermal control elements, i.e., thermal diodes, switches, and regulators, can control the heat flow ...
Magnetocaloric materials are promising in the realization of some thermodynamic machines in substitu...
Spin-related effects in thermoelectricity can be used to design more efficient refrigerators and off...
Abstract—The search for novel spintronic devices brings about new ways to control switching in magne...
This thesis demonstrates two new device concepts that are based on the tunneling and giant magnetore...
The cooling power of a magnetocaloric cooling system scales with the cycle frequency. Therefore, a h...
We present a parallel network of 16 demagnetization refrigerators mounted on a cryofree dilution ref...
International audienceIn order to provide continuous cooling at 50 mK for space or laboratory applic...
The magnetocaloric effect (MCE) has been intensively studied for novel energy efficient thermal mana...
A unique multiferroic type of thermomagnetic generator is being investigated in order to establish i...