We report on fabrication and characterization of ultra-thin suspended single crystalline flat silicon membranes with thickness down to 6 nm. We have developed a method to control the strain in the membranes by adding a strain compensating frame on the silicon membrane perimeter to avoid buckling after the release. We show that by changing the properties of the frame the strain of the membrane can be tuned in controlled manner. Consequently, both the mechanical properties and the band structure can be engineered, and the resulting membranes provide a unique laboratory to study low-dimensional electronic, photonic, and phononic phenomena
The introduction of strain into semiconductors offers a well-known route to modify their band struct...
This chapter reviews phonon research in ultrathin free-standing silicon membranes made of silicon-on...
This chapter reviews phonon research in ultrathin free-standing silicon membranes made of silicon-on...
We report on fabrication and characterization of ultra-thin suspended single crystalline flat silico...
We report on fabrication and characterization of ultra-thin suspended single crystalline flat silico...
We report on fabrication and characterization of ultra-thin suspended single crystalline flat silico...
The introduction of strain into semiconductors offers a well-known route to modify their band struct...
ingle-crystal silicon membranes with nanometer thicknesses have mechan-ical properties that can be e...
An innovative method to fabricate large area (up to several squared millimeters) ultrathin (100 nm) ...
A thin, flat and single crystal membrane on which to mount sensors is generally required for integra...
A thin, flat and single crystal membrane on which to mount sensors is generally required for integra...
A thin, flat and single crystal membrane on which to mount sensors is generally required for integra...
Under the terms of the Creative Commons Attribution (CC BY) license to their work.-- et al.A thin, f...
We study the vibrational behavior of silicon membranes with a thickness of a few hundred nanometers ...
Free-standing Si films have been and remain an excellent example to study experimentally the effect ...
The introduction of strain into semiconductors offers a well-known route to modify their band struct...
This chapter reviews phonon research in ultrathin free-standing silicon membranes made of silicon-on...
This chapter reviews phonon research in ultrathin free-standing silicon membranes made of silicon-on...
We report on fabrication and characterization of ultra-thin suspended single crystalline flat silico...
We report on fabrication and characterization of ultra-thin suspended single crystalline flat silico...
We report on fabrication and characterization of ultra-thin suspended single crystalline flat silico...
The introduction of strain into semiconductors offers a well-known route to modify their band struct...
ingle-crystal silicon membranes with nanometer thicknesses have mechan-ical properties that can be e...
An innovative method to fabricate large area (up to several squared millimeters) ultrathin (100 nm) ...
A thin, flat and single crystal membrane on which to mount sensors is generally required for integra...
A thin, flat and single crystal membrane on which to mount sensors is generally required for integra...
A thin, flat and single crystal membrane on which to mount sensors is generally required for integra...
Under the terms of the Creative Commons Attribution (CC BY) license to their work.-- et al.A thin, f...
We study the vibrational behavior of silicon membranes with a thickness of a few hundred nanometers ...
Free-standing Si films have been and remain an excellent example to study experimentally the effect ...
The introduction of strain into semiconductors offers a well-known route to modify their band struct...
This chapter reviews phonon research in ultrathin free-standing silicon membranes made of silicon-on...
This chapter reviews phonon research in ultrathin free-standing silicon membranes made of silicon-on...