Diffusion is one of the most ubiquitous transport phenomena in nature. Experimentally, it can be tracked by following point spreading in space and time. Here, we introduce a spatiotemporal pump-probe microscopy technique that exploits the residual spatial temperature profile obtained through the transient reflectivity when probe pulses arrive before pump pulses. This corresponds to an effective pump-probe time delay of 13 ns, determined by the repetition rate of our laser system (76 MHz). This pre-time-zero technique enables probing the diffusion of long-lived excitations created by previous pump pulses with nanometer accuracy and is particularly powerful for following in-plane heat diffusion in thin films. The particular advantage of this ...
Original experimental method for evaluation of thermal diffusivity coefficient of vacuum deposited t...
A novel method for thermal diffusivity evolution of thin-film materials with pulsed Gaussian beam an...
We demonstrate that the in-plane thin film heat transport can be accurately mapped via confocal anti...
Diffusion is one of the most ubiquitous transport phenomena in nature. Experimentally, it can be tra...
peer reviewedDiffusion is one of the most ubiquitous transport phenomena in nature. Experimentally, ...
In this work, we studied ultrafast thermal transport at nanoscale in thin films by femtosecond pump-...
Periodic heat flow methods for measurement of the diffusivity of a material have proven to be highly...
A new measurement technique based on the transient hot strip technique has recently been developed f...
We describe an optical method to directly measure the position-dependent thermal diffusivity of refl...
By expanding the limit of miniaturisation to achieve superior materials and devices properties, nano...
Durant ces travaux, nous nous sommes intéressés à l’étude des transferts thermiques aux nano-échelle...
The authors demonstrate a method to probe thermal diffusion at megahertz frequencies with nanometer ...
Diffusion coefficients obtained from weighted mean square displacements along probe molecule traject...
Thesis (Ph.D.)--Boston UniversityAs electronic and photonic devices shrink to the nanoscale, heat di...
Thin metal films are widely used as interconnecting wires and coatings in electronic devices and opt...
Original experimental method for evaluation of thermal diffusivity coefficient of vacuum deposited t...
A novel method for thermal diffusivity evolution of thin-film materials with pulsed Gaussian beam an...
We demonstrate that the in-plane thin film heat transport can be accurately mapped via confocal anti...
Diffusion is one of the most ubiquitous transport phenomena in nature. Experimentally, it can be tra...
peer reviewedDiffusion is one of the most ubiquitous transport phenomena in nature. Experimentally, ...
In this work, we studied ultrafast thermal transport at nanoscale in thin films by femtosecond pump-...
Periodic heat flow methods for measurement of the diffusivity of a material have proven to be highly...
A new measurement technique based on the transient hot strip technique has recently been developed f...
We describe an optical method to directly measure the position-dependent thermal diffusivity of refl...
By expanding the limit of miniaturisation to achieve superior materials and devices properties, nano...
Durant ces travaux, nous nous sommes intéressés à l’étude des transferts thermiques aux nano-échelle...
The authors demonstrate a method to probe thermal diffusion at megahertz frequencies with nanometer ...
Diffusion coefficients obtained from weighted mean square displacements along probe molecule traject...
Thesis (Ph.D.)--Boston UniversityAs electronic and photonic devices shrink to the nanoscale, heat di...
Thin metal films are widely used as interconnecting wires and coatings in electronic devices and opt...
Original experimental method for evaluation of thermal diffusivity coefficient of vacuum deposited t...
A novel method for thermal diffusivity evolution of thin-film materials with pulsed Gaussian beam an...
We demonstrate that the in-plane thin film heat transport can be accurately mapped via confocal anti...