Matches in SemOpenAlex for { <https://semopenalex.org/work/W1986647788> ?p ?o ?g. }
- W1986647788 abstract "We report on a step-selective time-resolved second harmonic generation (SHG) method using vicinal TiO${}_{2}$ (110) with regularly aligned step bunches. The step selectivity was realized by taking advantage of the symmetry-selective properties of second order nonlinear optical processes. In the time-resolved pump-probe SHG measurement, the step bunches displayed a unique temporal response or a sharp spike decaying within ensuremath{sim}100 ps, while no decay kinetics was observed for the (110) terraces within a nanosecond. The observed unique local dynamics at the step bunches was attributed to a transient change in their local carrier density. This carrier density change at the step bunches was discussed from the aspect of their local density of states (LDOS) by using step-selective second harmonic and sum frequency generation (SHG/SFG) spectroscopy and density functional theory (DFT) calculation." @default.
- W1986647788 created "2016-06-24" @default.
- W1986647788 creator A5031648329 @default.
- W1986647788 creator A5087391386 @default.
- W1986647788 creator A5088999868 @default.
- W1986647788 date "2012-07-26" @default.
- W1986647788 modified "2023-09-25" @default.
- W1986647788 title "Selective observation of local carrier dynamics at step bunches on vicinal TiO<mml:math xmlns:mml=http://www.w3.org/1998/Math/MathML display=inline><mml:msub><mml:mrow /><mml:mn>2</mml:mn></mml:msub></mml:math>(110) by time-resolved pump-probe second harmonic generation method" @default.
- W1986647788 cites W103371462 @default.
- W1986647788 cites W1637729807 @default.
- W1986647788 cites W1964834983 @default.
- W1986647788 cites W1968394445 @default.
- W1986647788 cites W1970408961 @default.
- W1986647788 cites W1970785384 @default.
- W1986647788 cites W1978916651 @default.
- W1986647788 cites W1979103628 @default.
- W1986647788 cites W1981368803 @default.
- W1986647788 cites W1983689981 @default.
- W1986647788 cites W1986252415 @default.
- W1986647788 cites W1989050090 @default.
- W1986647788 cites W1990085155 @default.
- W1986647788 cites W1991170086 @default.
- W1986647788 cites W1993319667 @default.
- W1986647788 cites W1994791512 @default.
- W1986647788 cites W1994942606 @default.
- W1986647788 cites W1995905337 @default.
- W1986647788 cites W2001242965 @default.
- W1986647788 cites W2002244580 @default.
- W1986647788 cites W2002783973 @default.
- W1986647788 cites W2004811259 @default.
- W1986647788 cites W2005706996 @default.
- W1986647788 cites W2014710896 @default.
- W1986647788 cites W2016681947 @default.
- W1986647788 cites W2019206530 @default.
- W1986647788 cites W2020583632 @default.
- W1986647788 cites W2023370645 @default.
- W1986647788 cites W2027395781 @default.
- W1986647788 cites W2027832744 @default.
- W1986647788 cites W2029955670 @default.
- W1986647788 cites W2032351859 @default.
- W1986647788 cites W2033157542 @default.
- W1986647788 cites W2035410904 @default.
- W1986647788 cites W2040059419 @default.
- W1986647788 cites W2040310078 @default.
- W1986647788 cites W2041305119 @default.
- W1986647788 cites W2042492216 @default.
- W1986647788 cites W2043805065 @default.
- W1986647788 cites W2043944493 @default.
- W1986647788 cites W2045469252 @default.
- W1986647788 cites W2049305800 @default.
- W1986647788 cites W2054591468 @default.
- W1986647788 cites W2056637349 @default.
- W1986647788 cites W2057375772 @default.
- W1986647788 cites W2059426590 @default.
- W1986647788 cites W2061030069 @default.
- W1986647788 cites W2061654789 @default.
- W1986647788 cites W2061839236 @default.
- W1986647788 cites W2062387493 @default.
- W1986647788 cites W2071763905 @default.
- W1986647788 cites W2072638726 @default.
- W1986647788 cites W2073292260 @default.
- W1986647788 cites W2074191874 @default.
- W1986647788 cites W2075314982 @default.
- W1986647788 cites W2076079144 @default.
- W1986647788 cites W2077131935 @default.
- W1986647788 cites W2078385112 @default.
- W1986647788 cites W2081716793 @default.
- W1986647788 cites W2084936898 @default.
- W1986647788 cites W2086580629 @default.
- W1986647788 cites W2088993086 @default.
- W1986647788 cites W2093031590 @default.
- W1986647788 cites W2125614043 @default.
- W1986647788 cites W2131874473 @default.
- W1986647788 cites W2132953107 @default.
- W1986647788 cites W2138405719 @default.
- W1986647788 cites W2139491573 @default.
- W1986647788 cites W2140976092 @default.
- W1986647788 cites W2143720538 @default.
- W1986647788 cites W2145274462 @default.
- W1986647788 cites W2148166591 @default.
- W1986647788 cites W2148283272 @default.
- W1986647788 cites W2159390592 @default.
- W1986647788 cites W2159752439 @default.
- W1986647788 cites W3022730611 @default.
- W1986647788 cites W3080449080 @default.
- W1986647788 cites W2069905675 @default.
- W1986647788 doi "https://doi.org/10.1103/physrevb.86.045447" @default.
- W1986647788 hasPublicationYear "2012" @default.
- W1986647788 type Work @default.
- W1986647788 sameAs 1986647788 @default.
- W1986647788 citedByCount "4" @default.
- W1986647788 countsByYear W19866477882015 @default.
- W1986647788 countsByYear W19866477882019 @default.
- W1986647788 countsByYear W19866477882021 @default.
- W1986647788 countsByYear W19866477882022 @default.
- W1986647788 crossrefType "journal-article" @default.
- W1986647788 hasAuthorship W1986647788A5031648329 @default.
- W1986647788 hasAuthorship W1986647788A5087391386 @default.
- W1986647788 hasAuthorship W1986647788A5088999868 @default.
- W1986647788 hasConcept C120665830 @default.