J. Elliott OrtmannNishant NookalaQian HeLingyuan GaoChungwei LinAgham PosadasAlbina Y. BorisevichMikhail A. BelkinAlexander A. Demkov
The Si-compatibility of perovskite heterostructures offers the intriguing possibility of producing oxide-based quantum well (QW) optoelectronic devices for use in Si photonics. While the SrTiO3/LaAlO3 (STO/LAO) system has been studied extensively in the hopes of using the interfacial two-dimensional electron gas in Si-integrated electronics, the potential to exploit its giant 2.4 eV conduction band offset in oxide-based QW optoelectronic devices has so far been largely ignored. Here, we demonstrate room-temperature intersubband absorption in STO/LAO QW heterostructures at energies on the order of hundreds of meV, including at energies approaching the critically important telecom wavelength of 1.55 μm. We demonstrate the ability to control the absorption energy by changing the width of the STO well layers by a single unit cell and present theory showing good agreement with experiment. A detailed structural and chemical analysis of the samples via scanning transmission electron microscopy and electron energy loss spectroscopy is presented. This work represents an important proof-of-concept for the use of transition metal oxide QWs in Si-compatible optoelectronic devices.
Giriraj JnawaliMengchen HuangJen‐Feng HsuHyungwoo LeeJungwoo LeePatrick IrvinChang‐Beom EomBrian D’UrsoJeremy Levy
J. Elliott Ortmann (5578748)Nishant Nookala (3962528)Qian He (248656)Lingyuan Gao (5578751)Chungwei Lin (2144713)Agham B. Posadas (5578754)Albina Y. Borisevich (1544929)Mikhail A. Belkin (5578757)Alexander A. Demkov (1766848)
Jungwon ChangJ. H. SongJoon Sung LeeHyunho NohSang Keun SeungLkhagvasuren BaasandorjSoon Gul LeeYong‐Joo DohJinhee Kim
A. TebanoEmiliana FabbriDaniele PergolesiG. BalestrinoEnrico Traversa
Ming YangAriando AriandoJun ZhouTeguh Citra AsmaraPéter KrügerXiaojiang YuXiao WangC. Sánchez-HankeYuan Ping FengT. VenkatesanAndrivo Rusydi