A new method for the creation of patterned, focused, optically generated acoustic fields using a single optical pulse is introduced. This utilises multi-layer `holograms' composed of several spatially separate absorbing layers. Each layer is individually patterned so as to focus at a set of targeted points. To create the patterns, a ray-tracing model was implemented to calculate the impulse response of pixels within each absorbing layer to a set of targeted points. An optimisation approach was then used to find the optimal pattern for each layer to create a field evenly focused at each of the target points. The method was validated using both numerical simulations and acoustic field measurements. It was demonstrated that a 3×3 array of acou...
A miniature all-optical ultrasound imaging system is presented that generates three-dimensional imag...
Dynamic acoustic wavefront control is essential for many acoustic applications, including biomedical...
Acoustic holograms are formed by interfering multiple sonic sources of identical frequency and diffe...
Acoustic fields with multiple foci have many applications in physical acoustics ranging from particl...
Precise control over the temporal and spatial properties of acoustic fields in 2 or 3-D is essential...
Abstract—To obtain high resolution ultrasound images, trans-ducers able to operate at high frequenci...
In this work, the use of binary amplitude holography is investigated as a mechanism to focus broadba...
Holographic techniques are fundamental to applications such as volumetric displays, high-density dat...
The photoacoustic effect was employed to generate short-duration quasi-unipolar acoustic pressure pu...
One of the applications of the photoacoustic effect in biomedical research is generation of ultra-sh...
[EN] We report 3D-printed acoustic holographic lenses for the formation of ultrasonic fields of comp...
Holographic methods from optics can be adapted to acoustics for enabling novel applications in parti...
[EN] We present 3D printed holographic lenses that correct the aberrations of the skull and, simulta...
AbstractInfluence of acoustic inhomogeneities and resulting reflection artifacts is an important pro...
Holographic projections of experimental ultrasound measurements generally use the angular spectrum m...
A miniature all-optical ultrasound imaging system is presented that generates three-dimensional imag...
Dynamic acoustic wavefront control is essential for many acoustic applications, including biomedical...
Acoustic holograms are formed by interfering multiple sonic sources of identical frequency and diffe...
Acoustic fields with multiple foci have many applications in physical acoustics ranging from particl...
Precise control over the temporal and spatial properties of acoustic fields in 2 or 3-D is essential...
Abstract—To obtain high resolution ultrasound images, trans-ducers able to operate at high frequenci...
In this work, the use of binary amplitude holography is investigated as a mechanism to focus broadba...
Holographic techniques are fundamental to applications such as volumetric displays, high-density dat...
The photoacoustic effect was employed to generate short-duration quasi-unipolar acoustic pressure pu...
One of the applications of the photoacoustic effect in biomedical research is generation of ultra-sh...
[EN] We report 3D-printed acoustic holographic lenses for the formation of ultrasonic fields of comp...
Holographic methods from optics can be adapted to acoustics for enabling novel applications in parti...
[EN] We present 3D printed holographic lenses that correct the aberrations of the skull and, simulta...
AbstractInfluence of acoustic inhomogeneities and resulting reflection artifacts is an important pro...
Holographic projections of experimental ultrasound measurements generally use the angular spectrum m...
A miniature all-optical ultrasound imaging system is presented that generates three-dimensional imag...
Dynamic acoustic wavefront control is essential for many acoustic applications, including biomedical...
Acoustic holograms are formed by interfering multiple sonic sources of identical frequency and diffe...