CN203734125U - Single mode semi-microdisk resonant cavity - Google Patents

Single mode semi-microdisk resonant cavity Download PDF

Info

Publication number
CN203734125U
CN203734125U CN201420043536.7U CN201420043536U CN203734125U CN 203734125 U CN203734125 U CN 203734125U CN 201420043536 U CN201420043536 U CN 201420043536U CN 203734125 U CN203734125 U CN 203734125U
Authority
CN
China
Prior art keywords
resonant cavity
single mode
micro
type silicon
mode half
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201420043536.7U
Other languages
Chinese (zh)
Inventor
周治平
李心白
邓清中
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Peking University
Original Assignee
Peking University
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Peking University filed Critical Peking University
Priority to CN201420043536.7U priority Critical patent/CN203734125U/en
Application granted granted Critical
Publication of CN203734125U publication Critical patent/CN203734125U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Landscapes

  • Optical Modulation, Optical Deflection, Nonlinear Optics, Optical Demodulation, Optical Logic Elements (AREA)

Abstract

The utility model relates to a single mode semi-microdisk resonant cavity. The single mode semi-microdisk resonant cavity includes an inner contour line and an outer contour line which are respectively closed; a waveguide (3) is arranged between the inner and outer contour lines; the inner contour line is used for a fan connection region (2) which is in an electrical connection or a mechanical connection; the single mode semi-microdisk resonant cavity also includes a gradual transition curve (1) which makes the width of the waveguide change from narrow to wide; and the angle of the fan connection region (2) is less than or equal to 270 DEG and more than 0 DEG. The connection region (2) allows a connecting structure with a maximum of 270 DEG, so that a connection resistance is small and the high speed response can be realized. The transition curve (1) can also make the resonant cavity waveguide become wider while guaranteeing not to stimulate a high order mode and a leakage mode, so as to reduce the cavity loss. The semi-microdisc resonant cavity proposed by the utility model operates for the single mode, does not cause the decrease of the free spectral range, and can meet the strict requirement for the light field pattern in the filtering and modulation and other application; and the semi-microdisc resonant cavity has a plurality of potential uses in the integrated areas including the low energy consumption and high speed electro-optic modulator, the optical logic operation device, the active filter, the heating / tuning device, the thermo optic switch, the electrical / mechanical / optical transducer which require the resonant cavity structure in the electrical or mechanical connection.

Description

The micro-dish resonant cavity of a kind of single mode half
Technical field
The utility model relates to integrated opto-electronic technical field, relates in particular to a kind of resonant cavity.
Background technology
Active micro-ring resonant cavity is the critical elements in integrated optoelectronics, there is purposes very widely, contain filtering, modulation, logical operation, sensing, thermo-optical switch, tuning etc., in integrated optoelectronics moves towards the process of commercialization, occupy to pass consequence.But the electricity of active micro-ring resonant cavity connects and is difficult for realizing, because heavily doped syndeton can cause the loss of considerable light field, significantly reduce device performance, this is to hinder active micro-ring resonant cavity further to one of main difficulty of miniaturization and high-performance development.On the other hand, partial resonance chamber needs mechanical connecting structure, to realize the interaction of light wave and mechanical wave, and the new resonant cavity device that this connects in the urgent need to realizing low-loss mechanical.
Recent years abroad has some work to be devoted to address this problem.The Massachusetts Institute of Technology proposes " adiabatic micro-ring resonant cavity ", and it uses oval-shaped cavity, and in the waveguide place of broadening can allow ring among a small circle, electricity connects, and does not cause larger light field to leak.But this structure join domain is too little, cause contact resistance bigger than normal, and speed is restricted by RC constant, be also resistance, electric capacity product, therefore resistance is larger, is just difficult to realize high-speed response.This defect is the restriction that is subject to cavity resonator structure, is difficult to remarkable improvement.To substantially solve the difficulty that active micro-ring resonant cavity electricity connects, need the resonant cavity type that utility model is new.
Utility model content
(1) technical problem that will solve
The technical problems to be solved in the utility model is exactly how to increase existing cavity resonator structure join domain, reduces contact resistance, thereby realizes high-speed response.
(2) technical scheme
In order to solve the problems of the technologies described above, the utility model provides a kind of single mode half micro-dish resonant cavity, comprise closed respectively inside and outside outline line, it between inside and outside outline line, is the waveguide of poor conductor material, or the surface plasma wave that poor conductor material is combined with metal is led, it is characterized in that, described inner outline is by connecting for electricity or the fan-shaped join domain of mechanical connection, and realizing duct width from being too narrow to wide gradual transition curve composition, the angle of described fan-shaped join domain is less than or equal to 270 degree and is greater than 0 degree.
Electricity connects and mechanical connection is produced in fan-shaped join domain, the maximum syndeton that allows 270 degree scopes.Same when large when syndeton and join domain, syndeton, for being full of join domain, forms solid shape, otherwise is hollow shape.
The effect of described easement curve is to realize duct width from being too narrow to wide gradual change, to ensure not exciting higher order mode and leakage mode, realizes single mode operation.Described easement curve is the curve of smooth connection, comprises spline curve, interpolation curve, minimum change curve, Euler's helical etc.The utility model also can be made electricity in easement curve part and connect, but can only allow two kinds, be also " planar waveguide connection " and " sidewall grating is connected ", but this connection can cause loss, can not increase loss and make to connect at join domain 2.
Described poor conductor material comprises medium, organic substance etc.
The micro-dish resonant cavity of single mode half adopts evanscent field coupled modes input light.
Described outline uses circle or easement curve shape.
Preferably, the outer contour of the described micro-dish resonant cavity of single mode half is circular, and outline uses circular performance to be better than easement curve shape.
Preferably, described join domain is semicircle.
(3) beneficial effect
The micro-dish resonant cavity of single mode half of the present utility model is because the inner outline of sealing is made up of fan-shaped join domain and easement curve, thereby can allow wider electricity or mechanical connection, realize higher rate, or realize more low-loss in onesize syndeton situation.
Brief description of the drawings
In order to be illustrated more clearly in the utility model embodiment or technical scheme of the prior art, to the accompanying drawing of required use in embodiment or description of the Prior Art be briefly described below, apparently, accompanying drawing in the following describes is only embodiment more of the present utility model, for those of ordinary skill in the art, do not paying under the prerequisite of creative work, can also obtain according to these accompanying drawings other accompanying drawing.
Fig. 1 is the structural representation of the micro-dish resonant cavity of single mode half;
Fig. 2 is the optical field distribution schematic diagram of the micro-dish resonant cavity of single mode half;
Fig. 3 is the schematic diagram of the inner outline design example of the micro-dish resonant cavity of single mode half;
Fig. 4 is the structural representation of realizing high-speed modulator on the micro-dish resonant cavity of single mode half basis;
In figure: 1, easement curve; 2, join domain; 3, waveguide; 4, N-type silicon; 5, P type silicon; 6, N+ type silicon; 7, P+ type silicon; 8, intrinsic silicon; 9, metal electrode.
Embodiment
Below in conjunction with drawings and Examples, execution mode of the present utility model is described in further detail.Following examples are used for illustrating the utility model, but can not be used for limiting scope of the present utility model.
As shown in Figure 1, the micro-dish resonant cavity of single mode half of the present embodiment comprises closed respectively inside and outside outline line, it between inside and outside outline line, is the waveguide 3 of poor conductor material, or the surface plasma wave that poor conductor material is combined with metal leads 3, it is characterized in that, described inner outline is by connecting for electricity or the fan-shaped join domain 2 of mechanical connection, and realize duct width and form from being too narrow to wide gradual transition curve 1, the angle of described fan-shaped join domain 2 is less than or equal to 270 degree and is greater than 0 degree.The effect of easement curve 1 is when resonant cavity waveguide is broadened gradually, to ensure not excite higher order mode and leakage mode to reduce cavity loss, and easement curve 1 is the key component of half micro-dish resonant cavity, determines device overall performance; Join domain 2 is fan-shaped, can use the material identical with waveguide 3 or fill other materials, and electricity connects or mechanical connection can be produced on this region.In the present embodiment, coupled zone is in bottom, and join domain 2 is on top, as shown in fig. 1.In addition also join domain 2 can be produced on to left side or the right side of resonant cavity, remainder connects with easement curve 1, use single waveguide or two waveguides from the I/O of upper (lower) portion, input method is evanscent field coupling input, can realize by straight wave guide.
The parameter of marking in Fig. 1, R 2for exradius, R 11for the center of circle is to the distance between easement curve end, R 10for the center of circle is to the distance between easement curve 1 starting point, the central angle that α opens the center of circle for left/right side easement curve 1.The utility model is with radius R 2=2 μ m, R 11=1.3 μ m, α=90 ° are example, introduce embodiment:
In the present embodiment, utilize Solving Nonlinear Systems of Equations easement curve 1, on mathematics, can prove that the bent curvature of a curve that meets equation group condition changes minimum.
Consider with (R 10, 0) and be starting point, with (R 11cos α, R 11sin α) can meet through translation, rotation the requirement of different starting points for the easement curve 1(of terminal), solve following equation group:
κ ( s ) = 1 R 10 + a 1 s + a 2 s 2 + a 3 s 3 (1)
θ ( s ) = π 2 + 1 R 10 s + a 1 2 s 2 + a 2 3 s 3 + a 3 4 s 4
θ ( s 1 ) = π 2 + α
dκ ds ( s 1 ) = 0 (2)
x n=R 11cosα
y n=R 11sinα
Wherein coordinate x, y adopts discrete iteration algorithm to obtain:
x i=x i-1+cos[θ((i-1)ds)]ds (3)
y i=y i-1+sin[θ((i-1)ds)]ds
Solving unknown number is a 1, a 2, a 3, s 1, the parameters R of giving by this example 2=2 μ m, R 11=1.3 μ m, R 10=1.5 μ m, α=90 °, easement curve 1 is as shown in Figure 3.As shown in Figure 2, light field all keeps single mode transport to the optical field distribution figure of this structure in whole resonant cavity, and can not be leaked to resonant cavity center, therefore can realize low-loss electricity on a large scale or mechanical connection, and intrinsic Q is up to 1 × 10 5.
The center that can clearly be observed resonant cavity by Fig. 2 does not have optical field distribution, therefore makes electricity connection here and can not increase loss.The conversion of pattern is from the oval hot spot of the basic mode (figure middle and lower part) of strongly guided waveguide, and to the melon seeds type hot spot of Whispering-gallery-mode (figure middle and upper part), transition is mild, and loss is very little, and keeps single mode.
Fig. 3 is the disclosed a kind of inner outline design example schematic diagram of the present embodiment.
On the basis of the micro-dish resonant cavity of single mode half having designed, here taking high-speed modulator as example, show and how significantly to promote its response speed, a kind of high-speed modulator as shown in Figure 4, comprise the micro-dish resonant cavity of single mode half described in the utility model, in the waveguide of the micro-dish resonant cavity of described single mode half, be manufactured with PN junction, upper strata is P type silicon 5, lower floor is N-type silicon 4, join domain 2 at the micro-dish resonant cavity of single mode half is connected with electricity bindiny mechanism, described electricity bindiny mechanism upper strata is P+ type silicon 7, middle level is intrinsic silicon 8, lower floor is N+ type silicon 6, be connected with metal electrode 9 at N+ type silicon 6 upper surfaces and P+ type silicon 7 upper surfaces.The rule being inversely proportional to according to resistance and connection area, the electricity connected with waveguide PN junction is connected and can reduces contact resistance on a large scale, promotes the electricity frequency response of RC constant restriction.Analog result shows, the structure the utility model proposes can make device resistance (positive and negative electrode intermetallic resistance in figure) drop to nearly 1/10th of adiabatic micro-ring resonant cavity connection, approximately 50 Ω, therefore the utility model is very significant to the lifting of modulation rate.Lower semi-ring does not draw syndeton in the drawings, can adopt doped sidewalls grating (Sidewall grating) to realize and connect.The parameter that this example is used is: N-type silicon 4 Doping Phosphorus, concentration 1 × 10 18/ cm 3, P type silicon 5 doped with boron, concentration 1 × 10 18/ cm 3, N+ type silicon 6 arsenic doped, concentration 1 × 10 20/ cm 3, P+ type silicon 7 doped with boron, concentration 1 × 10 20/ cm 3.
PN junction in the present embodiment in waveguide, also can be that lower floor is P type silicon 5, upper strata is N-type silicon 4, join domain 2 at the micro-dish resonant cavity of single mode half is connected with electricity bindiny mechanism, described lower floor of electricity bindiny mechanism is P+ type silicon 7, middle level is intrinsic silicon 8, and upper strata is N+ type silicon 6, is connected with metal electrode 9 at N+ type silicon 6 upper surfaces and P+ type silicon 7 upper surfaces.
The utility model also can be made electricity in easement curve 1 part and connect, but can only allow two kinds, be also " planar waveguide connection " and " sidewall grating is connected ", but this connection can cause loss, can not increase loss and make to connect at join domain 2.
The utility model good effect that compared with prior art utility model is brought is to make active micro-ring resonant cavity device allow wider electricity or mechanical connection, significantly improve the frequency response of modulator, realize higher rate, or realize more low-loss in onesize syndeton situation.
Above execution mode is only for the utility model is described, but not to restriction of the present utility model.Although the utility model is had been described in detail with reference to embodiment, those of ordinary skill in the art is to be understood that, the technical solution of the utility model is carried out to various combinations, revises or is equal to replacement, do not depart from the spirit and scope of technical solutions of the utility model, all should be encompassed in the middle of claim scope of the present utility model.

Claims (7)

1. the micro-dish resonant cavity of single mode half, comprise closed respectively inside and outside outline line, it between inside and outside outline line, is the waveguide (3) of poor conductor material, or the surface plasma wave that poor conductor material is combined with metal is led (3), it is characterized in that, described inner outline is by connecting for electricity or the fan-shaped join domain (2) of mechanical connection, and realizing duct width from being too narrow to wide gradual transition curve (1) composition, the angle of described fan-shaped join domain (2) is less than or equal to 270 degree and is greater than 0 degree.
2. the micro-dish resonant cavity of single mode half according to claim 1, is characterized in that, described fan-shaped join domain (2) is semicircle.
3. the micro-dish resonant cavity of single mode half according to claim 1, is characterized in that, described outer contour is circle or easement curve shape.
4. the micro-dish resonant cavity of single mode half according to claim 1, is characterized in that, described easement curve (1) is provided with planar waveguide connection or sidewall grating connects.
5. according to the micro-dish resonant cavity of the single mode half described in any one in claim 1 to 4, it is characterized in that described easement curve (1) is the curve for smooth connection, comprise spline curve, interpolation curve, minimum change curve, Euler's helical.
6. a high-speed modulator, it is characterized in that, comprise the micro-dish resonant cavity of the single mode half described in any one in claim 1 to 5, in the waveguide (3) of the micro-dish resonant cavity of described single mode half, be manufactured with PN junction, upper strata is P type silicon (5), lower floor is N-type silicon (4), join domain (2) at the micro-dish resonant cavity of single mode half is connected with electricity syndeton, described electricity syndeton upper strata is P+ type silicon (7), middle level is intrinsic silicon (8), lower floor is N+ type silicon (6), be connected with metal electrode (9) at N+ type silicon (6) upper surface and P+ type silicon (7) upper surface.
7. a high-speed modulator, it is characterized in that, comprise the micro-dish resonant cavity of the single mode half described in any one in claim 1 to 5, in the waveguide (3) of the micro-dish resonant cavity of described single mode half, be manufactured with PN junction, lower floor is P type silicon (5), upper strata is N-type silicon (4), join domain (2) at the micro-dish resonant cavity of single mode half is connected with electricity syndeton, described electricity syndeton lower floor is P+ type silicon (7), middle level is intrinsic silicon (8), upper strata is N+ type silicon (6), be connected with metal electrode (9) at N+ type silicon (6) upper surface and P+ type silicon (7) upper surface.
CN201420043536.7U 2014-01-23 2014-01-23 Single mode semi-microdisk resonant cavity Expired - Fee Related CN203734125U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420043536.7U CN203734125U (en) 2014-01-23 2014-01-23 Single mode semi-microdisk resonant cavity

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420043536.7U CN203734125U (en) 2014-01-23 2014-01-23 Single mode semi-microdisk resonant cavity

Publications (1)

Publication Number Publication Date
CN203734125U true CN203734125U (en) 2014-07-23

Family

ID=51204171

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201420043536.7U Expired - Fee Related CN203734125U (en) 2014-01-23 2014-01-23 Single mode semi-microdisk resonant cavity

Country Status (1)

Country Link
CN (1) CN203734125U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103779769A (en) * 2014-01-23 2014-05-07 北京大学 Single-mode half microdisk resonant cavity

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103779769A (en) * 2014-01-23 2014-05-07 北京大学 Single-mode half microdisk resonant cavity
CN103779769B (en) * 2014-01-23 2016-03-02 北京大学 The micro-dish resonant cavity of a kind of single mode half

Similar Documents

Publication Publication Date Title
CN102156327B (en) Terahertz wave polarizing beam splitter with dual resonance cavity structure
CN104393133B (en) A kind of doped structure for the efficiency and bandwidth for improving silicon-based electro-optic tuning device
US20120251029A1 (en) Optical waveguide structure
US9223185B2 (en) Electro-optic silicon modulator with alternative capacitance-loaded coplanar waveguide structures
CN103779769B (en) The micro-dish resonant cavity of a kind of single mode half
CN105629519B (en) Silicon substrate optical modulator
CN105474078B (en) Electroabsorption modulator
CN108225297B (en) Resonant integrated optical gyroscope with vertically coupled silicon dioxide waveguide and lithium niobate thin film
CN205485142U (en) Silica -based electric optic modem doping structure
CN103760699B (en) Micro annular resonant cavity type adjustable light wave-filter based on liquid crystal narrow slit wave-guide
CN105629523A (en) Lithium niobate based tunable optical filter and application thereof
CN203734125U (en) Single mode semi-microdisk resonant cavity
CN109031706A (en) A kind of doped structure of silicon-based electro-optical modulator
CN105404028B (en) A kind of silicon-based electro-optical modulator of microcavity coupling multimode interferometer
CN204155033U (en) Silica-based photomodulator
CN105629522B (en) Silicon substrate optical modulator
CN115774345A (en) Electro-optic modulator
CN204155032U (en) Silica-based photomodulator
CN106125452B (en) Double logic gate optical modulation devices of single structure based on single-layer graphene
CN103472656A (en) Topological insulator-based all-optical wavelength conversion device
CN103760690A (en) PLC type optical power divider with adjustable power division ratio, manufacturing method and adjusting method
CN104460053A (en) Silicon substrate vertical trough type nanowire optical modulator
CN114200696A (en) Novel Mach-Zehnder electro-optic modulator
CN111290145B (en) High-speed modulator based on annular reflector
CN202033495U (en) Terahertz wave polarization beam splitter of structure of double resonant cavities

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20140723

Termination date: 20180123