Ping King Tien
#35,907
Most Influential Person Now
Electrical engineer
Ping King Tien's AcademicInfluence.com Rankings
Ping King Tienengineering Degrees
Engineering
#833
World Rank
#1310
Historical Rank
Electrical Engineering
#353
World Rank
#397
Historical Rank
Download Badge
Engineering
Why Is Ping King Tien Influential?
(Suggest an Edit or Addition)According to Wikipedia, Ping King Tien was a Chinese-American electrical engineer and scientist, noted for his contributions to microwave amplifiers and integrated optical circuits. Biography Tien was born in Shangyu, Shaoxing, Chekiang province, China. He did his undergraduate studies in the National Central University in Nanjing and Shanghai Jiao Tong University. He received his B.S. in electrical engineering in 1942. Tien continued his study in the United States, and received his master's degree in 1948 and PhD in 1951 both from the Stanford University.
Ping King Tien's Published Works
Published Works
- Light waves in thin films and integrated optics. (1971) (1006)
- MODES OF PROPAGATING LIGHT WAVES IN THIN DEPOSITED SEMICONDUCTOR FILMS (1969) (724)
- Theory of Prism–Film Coupler and Thin-Film Light Guides (1970) (692)
- Multiphoton Process Observed in the Interaction of Microwave Fields with the Tunneling between Superconductor Films (1963) (570)
- Integrated optics and new wave phenomena in optical waveguides (1977) (524)
- OPTICAL SECOND HARMONIC GENERATION IN FORM OF COHERENT CERENKOV RADIATION FROM A THIN‐FILM WAVEGUIDE (1970) (253)
- Parametric Amplification and Frequency Mixing in Propagating Circuits (1958) (199)
- Switching and modulation of light in magneto‐optic waveguides of garnet films (1972) (172)
- Thin organosilicon films for integrated optics. (1972) (163)
- Focusing of a light beam of Gaussian field distribution in continuous and periodic lens-like media (1965) (131)
- Optical waveguides of single‐crystal garnet films (1972) (122)
- A Traveling-Wave Ferromagnetic Amplifier (1958) (106)
- Optical waveguide modes in single‐crystalline LiNbO3–LiTaO3 solid‐solution films (1974) (97)
- Optical propagation in sheet and pattern generated films of ta(2)o(5). (1971) (91)
- A Large Signal Theory or Traveling-Wave Amplifiers (1955) (88)
- Formation of light-guiding interconnections in an integrated optical circuit by composite tapered-film coupling. (1973) (85)
- Nonlinear Thoery of Ultrasonic Wave Amplification and Current Saturation in Piezoelectric Semiconductors (1968) (81)
- EXPERIMENTS ON LIGHT WAVES IN A THIN TAPERED FILM AND A NEW LIGHT‐WAVE COUPLER (1971) (78)
- CW HIGH‐POWER CO2–N2–He LASER (1965) (73)
- Magneto‐optics and motion of the magnetization in a film‐waveguide optical switch (1974) (59)
- Traveling-Wave Tube Helix Impedance (1953) (57)
- Double zinc diffusion fronts in InP—Theory and experiment (1983) (51)
- Room‐temperature operation of lattice‐matched InP/Ga0.47In0.53As/InP double‐heterostructure lasers grown by MBE (1978) (50)
- Semileaky thin‐film optical isolator (1981) (48)
- Monte Carlo Calculation of Noise Near the Potential Minimum of a High‐Frequency Diode (1956) (47)
- The growth of LiNbO3 thin films by liquid phase epitaxial techniques (1975) (46)
- A large signal theory of traveling wave amplifiers including the effects of space charge and finite coupling between the beam and the circuit (1956) (46)
- PROPAGATION DELAY IN HIGH SPEED SILICON BIPOLAR AND GaAs HBT DIGITAL CIRCUITS (1990) (43)
- The growth of single crystalline waveguiding thin films of piezoelectric sillenites (1973) (39)
- Method of forming novel curved-line gratings and their use as reflectors and resonators in integrated optics. (1977) (37)
- Diffusion of Cd acceptors in InP and a diffusion theory for III‐V semiconductors (1979) (37)
- Two‐layered construction of integrated optical circuits and formation of thin‐film prisms, lenses, and reflectors (1974) (35)
- Coupling of Modes in Helixes (1954) (34)
- Focusing of a Long Cylindrical Electron Stream by Means of Periodic Electrostatic Fields (1954) (32)
- Radiation Fields of a Tapered Film and a Novel Film-to-Fiber Coupler (1975) (31)
- Light beam scanning and deflection in epitaxial LiNbO3 electro‐optic waveguides (1974) (31)
- Acoustoelectric Current Distribution and Current Saturation in CdS (1966) (30)
- Novel metal‐clad optical components and method of isolating high‐index substrates for forming integrated optical circuits (1975) (28)
- Transient Approach to Current Saturation in Photoconductive CdS (1967) (26)
- Bifilar Helix for Backward-Wave Oscillators (1954) (23)
- Space-Charge Waves in an Accelerated Electron Stream for Amplification of Microwave Signals (1952) (21)
- Electron Beam Excitation of Gas Laser Transitions and Measurements of Cross Sections of Excitation (1964) (19)
- Integrated Optics and Guided Waves-a Report of the Topical Meeting. (1972) (19)
- High‐speed analog and digital modulation of 1.51‐μm wavelength, three‐channel buried crescent InGaAsP lasers (1984) (19)
- NiSi2‐Si infrared Schottky photodetectors grown by molecular beam epitaxy (1982) (17)
- Wide-bandwidth modulation of three-channel buried-crescent laser diodes (1985) (15)
- Diffusion kinetics and optical quality in LiNbO3‐LiTaO3 optical waveguides (1975) (13)
- Integrated Optics: a Report on the 2nd OSA Topical Meeting. (1975) (13)
- Research in optical films for the applications of integrated optics (1975) (11)
- A Ferromagnetic Resonance Frequency Converter (1958) (8)
- A new analytical model and the impact of base charge storage on base potential distribution, emitter current crowding and base resistance (1992) (7)
- Microwave Processing - An Emerging Industrial Technology? (1994) (7)
- The growth of solid solution LiNbO3—LiTaO3 thin films for optical waveguides (1975) (7)
- Infrared photodetection in proton-bombarded InP (1984) (6)
- Integrated optics and thin-film technology☆ (1977) (5)
- Reciprocity between the reflection electron microscope and the low loss scanning electron microscope Visual observations of macroscopic Inhomogeneous broadening of the R1 line In ruby (1980) (4)
- Heterojunction phototransistors on n-channelled semi-insulating InP substrates (1985) (4)
- Three Channels Buried Crescent InGaAsP Laser with 1.51 μm Wavelength on Semi-insulating InP (1984) (4)
- Use of a concentric‐arc grating as a thin‐film spectrograph for guided waves (1980) (3)
- Optical Waveguides — Theory and Technology (1990) (3)
- Film Waveguides and Zig Zag Waves (1974) (2)
- Rules of refractive index and a potential well model of the optical waveguides (1981) (2)
- Erratum: Diffusion of Cd acceptors in InP and a diffusion theory for III‐V compounds (1979) (1)
- MP-B4 room-temperature operation of lattice-matched InP/Ga0.47In0.53As/InP double heterostructure lasers grown by MBE (1978) (1)
- A Movie on the Melt-Phase Epitaxial Growth of LiNbO3 on LiTaO3 Substrate (1976) (0)
- Abstracts of papers by bell system authors: Published in other journals (1976) (0)
- Recent development of integrated optics and physics of light waves in thin films (1972) (0)
- thin-film circuits connectors for optical conductors in the optical (1974) (0)
- Abstract: Single-Crystal Films and Development of Active Integrated Optics (1973) (0)
- Diffusion in III-V semiconductors for optoelectronic devices: Theory, experiment, and a method for observing kinetics in the diffusion cell (1979) (0)
- IIIA-5 scanning of a light beam in epitaxial LiNbO 3 electrooptical waveguides (1974) (0)
- optical waveguide has single crystal granat (1973) (0)
- URSI National Committee Report: Commission 7. Radio Electronics. 1. Parametric Amplifiers (1960) (0)
- Low-Loss Junctions between Dielectric and Metal-Clad Dielectric Waveguides (1976) (0)
- A Thin-Film Spectograph for Guided Waves (1980) (0)
- Optics in waveguides and the generalized rule of refractive index (1980) (0)
- Optical waveguide device in duennschichtausfuehrung (1973) (0)
- Koppeleinrichtung Coupling device (1974) (0)
- The Growth of LiNbO3 Thin Films by Liquid Phase Epitaxy (1976) (0)
- INTEGRATED OPTICS - PRESENT AND FUTURE (1973) (0)
This paper list is powered by the following services:
Other Resources About Ping King Tien
What Schools Are Affiliated With Ping King Tien?
Ping King Tien is affiliated with the following schools: